Stim: a fast stabilizer circuit simulator
Google Inc., Santa Barbara, California 93117, USA
| Published: | 2021-07-06, volume 5, page 497 |
| Eprint: | arXiv:2103.02202v3 |
| Doi: | https://doi.org/10.22331/q-2021-07-06-497 |
| Citation: | Quantum 5, 497 (2021). |
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Abstract
This paper presents “Stim", a fast simulator for quantum stabilizer circuits. The paper explains how Stim works and compares it to existing tools. With no foreknowledge, Stim can analyze a distance 100 surface code circuit (20 thousand qubits, 8 million gates, 1 million measurements) in 15 seconds and then begin sampling full circuit shots at a rate of 1 kHz. Stim uses a stabilizer tableau representation, similar to Aaronson and Gottesman's CHP simulator, but with three main improvements. First, Stim improves the asymptotic complexity of deterministic measurement from quadratic to linear by tracking the $inverse$ of the circuit's stabilizer tableau. Second, Stim improves the constant factors of the algorithm by using a cache-friendly data layout and 256 bit wide SIMD instructions. Third, Stim only uses expensive stabilizer tableau simulation to create an initial reference sample. Further samples are collected in bulk by using that sample as a reference for batches of Pauli frames propagating through the circuit.

Featured image: Stim is significantly faster than previous tools at bulk sampling of stabilizer circuits.
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[1] Scott Aaronson and Daniel Gottesman. Improved simulation of stabilizer circuits. Physical Review A, 70 (5): 052328, 2004. 10.1103/PhysRevA.70.052328.
https://doi.org/10.1103/PhysRevA.70.052328
[2] Thomas Alexander, Lev Bishop, Andrew Cross, Jay Gambetta, Ali Javadi-Abhari, Blake Johnson, and John Smolin. "a new openqasm for a new era of dynamic circuits". https://medium.com/qiskit/a-new-openqasm-for-a-new-era-of-dynamic-circuits-87f031cac49, 2020. Accessed: 2021-01-26.
https://medium.com/qiskit/a-new-openqasm-for-a-new-era-of-dynamic-circuits-87f031cac49
[3] Simon Anders and Hans J Briegel. Fast simulation of stabilizer circuits using a graph-state representation. Physical Review A, 73 (2): 022334, 2006. 10.1103/PhysRevA.73.022334.
https://doi.org/10.1103/PhysRevA.73.022334
[4] Dave Bacon. Operator quantum error-correcting subsystems for self-correcting quantum memories. Physical Review A, 73 (1): 012340, 2006. 10.1103/PhysRevA.73.012340.
https://doi.org/10.1103/PhysRevA.73.012340
[5] Sergey Bravyi and Dmitri Maslov. Hadamard-free circuits expose the structure of the clifford group. arXiv preprint arXiv:2003.09412, 2020. URL https://arxiv.org/abs/2003.09412.
arXiv:2003.09412
[6] Sergey Bravyi, Dan Browne, Padraic Calpin, Earl Campbell, David Gosset, and Mark Howard. Simulation of quantum circuits by low-rank stabilizer decompositions. Quantum, 3: 181, 2019. 10.22331/q-2019-09-02-181.
https://doi.org/10.22331/q-2019-09-02-181
[7] Kaifeng Bu and Dax Enshan Koh. Efficient classical simulation of clifford circuits with nonstabilizer input states. Physical review letters, 123 (17): 170502, 2019. 10.1103/PhysRevLett.123.170502.
https://doi.org/10.1103/PhysRevLett.123.170502
[8] Rui Chao, Michael E Beverland, Nicolas Delfosse, and Jeongwan Haah. Optimization of the surface code design for majorana-based qubits. Quantum, 4: 352, 2020. 10.22331/q-2020-10-28-352.
https://doi.org/10.22331/q-2020-10-28-352
[9] Qiskit Contributors. Qiskit: An open-source framework for quantum computing. 2019. 10.5281/zenodo.2562110.
https://doi.org/10.5281/zenodo.2562110
[10] A. G. Fowler, M. Mariantoni, J. M. Martinis, and A. N. Cleland. Surface codes: Towards practical large-scale quantum computation. Phys. Rev. A, 86: 032324, 2012. URL https://doi.org/10.1103/PhysRevA.86.032324. arXiv:1208.0928.
https://doi.org/10.1103/PhysRevA.86.032324
arXiv:1208.0928
[11] Craig Gidney and Austin G Fowler. Efficient magic state factories with a catalyzed $|ccz\rangle$ to $2|t\rangle $ transformation. Quantum, 3: 135, 2019. 10.22331/q-2019-04-30-135.
https://doi.org/10.22331/q-2019-04-30-135
[12] Craig Gidney, Austin Fowler, and Michael Newman. Informal private conversations about simulation bottlenecks, 2021.
[13] Daniel Gottesman. Stabilizer codes and quantum error correction. arXiv preprint quant-ph/9705052, 1997. URL https://arxiv.org/abs/quant-ph/9705052.
arXiv:quant-ph/9705052
[14] David Gross. Hudson’s theorem for finite-dimensional quantum systems. Journal of mathematical physics, 47 (12): 122107, 2006. 10.1063/1.2393152.
https://doi.org/10.1063/1.2393152
[15] Clare Horsman, Austin G Fowler, Simon Devitt, and Rodney Van Meter. Surface code quantum computing by lattice surgery. New Journal of Physics, 14 (12): 123011, 2012. 10.1088/1367-2630/14/12/123011.
https://doi.org/10.1088/1367-2630/14/12/123011
[16] Jakob Nielsen Hořeňovský. "response times: The 3 important limits". https://www.nngroup.com/articles/response-times-3-important-limits/, 1993. Accessed: 2021-01-26.
https://www.nngroup.com/articles/response-times-3-important-limits/
[17] Martin Hořeňovský. "generating random numbers using c++ standard library: the problems". https://codingnest.com/generating-random-numbers-using-c-standard-library-the-problems/, 2020. Accessed: 2021-01-26.
https://codingnest.com/generating-random-numbers-using-c-standard-library-the-problems/
[18] "Yack" (https://quantumcomputing.stackexchange.com/users/11887/yack). Answer to "how many n-qubit stabilizer states are there?". Quantum Stack Exchange, 2020. URL https://quantumcomputing.stackexchange.com/a/11781/119. URL:https://quantumcomputing.stackexchange.com/a/11781/119 (version: 2021-01-27).
https://quantumcomputing.stackexchange.com/a/11781/119
[19] Yifei Huang and Peter Love. Approximate stabilizer rank and improved weak simulation of clifford-dominated circuits for qudits. Physical Review A, 99 (5): 052307, 2019. 10.1103/PhysRevA.99.052307.
https://doi.org/10.1103/PhysRevA.99.052307
[20] Yifei Huang and Peter Love. Feynman-path-type simulation using stabilizer projector decomposition of unitaries. Physical Review A, 103 (2), February 2021. 10.1103/physreva.103.022428. URL https://doi.org/10.1103/physreva.103.022428.
https://doi.org/10.1103/physreva.103.022428
[21] Intel. Intel intrinsics guide (_mm256_and_si256). https://software.intel.com/sites/landingpage/IntrinsicsGuide/#text=_mm256_and_si256&expand=301, 2021. Accessed: 2021-01-26.
https://software.intel.com/sites/landingpage/IntrinsicsGuide/#text=_mm256_and_si256&expand=301
[22] Angela Karanjai, Joel J Wallman, and Stephen D Bartlett. Contextuality bounds the efficiency of classical simulation of quantum processes. arXiv preprint arXiv:1802.07744, 2018. URL https://arxiv.org/abs/1802.07744.
arXiv:1802.07744
[23] Emanuel Knill. Quantum computing with realistically noisy devices. Nature, 434 (7029): 39–44, 2005. 10.1038/nature03350.
https://doi.org/10.1038/nature03350
[24] Shota Nagayama, Austin G Fowler, Dominic Horsman, Simon J Devitt, and Rodney Van Meter. Surface code error correction on a defective lattice. New Journal of Physics, 19 (2): 023050, 2017. 10.1088/1367-2630/aa5918.
https://doi.org/10.1088/1367-2630/aa5918
[25] Jakob Nielsen. Usability engineering. Morgan Kaufmann, 1994.
[26] Peter Norvig. "approximate timing for various operations on a typical pc". http://norvig.com/21-days.html#answers, 2014. Accessed: 2021-01-26.
http://norvig.com/21-days.html#answers
[27] Patrick Rall, Daniel Liang, Jeremy Cook, and William Kretschmer. Simulation of qubit quantum circuits via pauli propagation. Physical Review A, 99 (6): 062337, 2019. 10.1103/PhysRevA.99.062337.
https://doi.org/10.1103/PhysRevA.99.062337
[28] Quantum AI team and collaborators. Cirq, October 2020. URL https://doi.org/10.5281/zenodo.4062499.
https://doi.org/10.5281/zenodo.4062499
[29] Matthew Ware, Guilhem Ribeill, Diego Riste, Colm Ryan, Blake Johnson, and Marcus P da Silva. Experimental pauli-frame randomization on a superconducting qubit. In APS March Meeting Abstracts, volume 2017, pages L46–004, 2017. 10.1103/PhysRevA.103.042604.
https://doi.org/10.1103/PhysRevA.103.042604
[30] Wikipedia. Advanced Vector Extensions — Wikipedia, the free encyclopedia. http://en.wikipedia.org/w/index.php?title=Advanced%20Vector%20Extensions&oldid=1021841294, 2021. [Online; accessed 11-May-2021].
http://en.wikipedia.org/w/index.php?title=Advanced%20Vector%20Extensions&oldid=1021841294
Cited by
[1] Xhek Turkeshi, "Measurement-induced criticality as a data-structure transition", Physical Review B 106 14, 144313 (2022).
[2] Satoshi Yoshida, Shiro Tamiya, and Hayata Yamasaki, "Concatenate codes, save qubits", npj Quantum Information 11 1, 88 (2025).
[3] Leandro Stefanazzi, Kenneth Treptow, Neal Wilcer, Chris Stoughton, Collin Bradford, Sho Uemura, Silvia Zorzetti, Salvatore Montella, Gustavo Cancelo, Sara Sussman, Andrew Houck, Shefali Saxena, Horacio Arnaldi, Ankur Agrawal, Helin Zhang, Chunyang Ding, and David I. Schuster, "The QICK (Quantum Instrumentation Control Kit): Readout and control for qubits and detectors", Review of Scientific Instruments 93 4, 044709 (2022).
[4] Dolev Bluvstein, Simon J. Evered, Alexandra A. Geim, Sophie H. Li, Hengyun Zhou, Tom Manovitz, Sepehr Ebadi, Madelyn Cain, Marcin Kalinowski, Dominik Hangleiter, J. Pablo Bonilla Ataides, Nishad Maskara, Iris Cong, Xun Gao, Pedro Sales Rodriguez, Thomas Karolyshyn, Giulia Semeghini, Michael J. Gullans, Markus Greiner, Vladan Vuletić, and Mikhail D. Lukin, "Logical quantum processor based on reconfigurable atom arrays", Nature 626 7997, 58 (2024).
[5] Craig Gidney, Michael Newman, and Matt McEwen, "Benchmarking the Planar Honeycomb Code", Quantum 6, 813 (2022).
[6] Volodymyr Sivak, Michael Newman, and Paul Klimov, "Optimization of Decoder Priors for Accurate Quantum Error Correction", Physical Review Letters 133 15, 150603 (2024).
[7] Spiro Gicev, Lloyd C L Hollenberg, and Muhammad Usman, "Fully convolutional 3D neural network decoders for surface codes with syndrome circuit noise", Quantum Science and Technology 11 2, 025048 (2026).
[8] Adam Bene Watts, David Gosset, Yinchen Liu, and Mehdi Soleimanifar, "Quantum Advantage from Measurement-Induced Entanglement in Random Shallow Circuits", PRX Quantum 6 1, 010356 (2025).
[9] Vsevolod I. Yashin and Maria A. Elovenkova, "Characterization of non-adaptive Clifford channels", Quantum Information Processing 24 3, 99 (2025).
[10] Tom Peham, Ludwig Schmid, Lucas Berent, Markus Müller, and Robert Wille, "Automated Synthesis of Fault-Tolerant State Preparation Circuits for Quantum Error-Correction Codes", PRX Quantum 6 2, 020330 (2025).
[11] Michael A. Perlin, Vickram N. Premakumar, Jiakai Wang, Mark Saffman, and Robert Joynt, "Fault-tolerant measurement-free quantum error correction with multiqubit gates", Physical Review A 108 6, 062426 (2023).
[12] Sam Westrick, Pengyu Liu, Byeongjee Kang, Colin McDonald, Mike Rainey, Mingkuan Xu, Jatin Arora, Yongshan Ding, and Umut A. Acar, 2024 IEEE International Conference on Quantum Computing and Engineering (QCE) 1132 (2024) ISBN:979-8-3315-4137-8.
[13] Madelyn Cain, Chen Zhao, Hengyun Zhou, Nadine Meister, J. Pablo Bonilla Ataides, Arthur Jaffe, Dolev Bluvstein, and Mikhail D. Lukin, "Correlated Decoding of Logical Algorithms with Transversal Gates", Physical Review Letters 133 24, 240602 (2024).
[14] P. Sierant and X. Turkeshi, "Entanglement and Absorbing State Transitions in (d+1)-Dimensional Stabilizer Circuits", Acta Physica Polonica A 144 6, 474 (2023).
[15] César Benito, Esperanza López, Borja Peropadre, and Alejandro Bermudez, "Comparative study of quantum error correction strategies for the heavy-hexagonal lattice", Quantum 9, 1623 (2025).
[16] Remmy Zen, Jan Olle, Luis Colmenarez, Matteo Puviani, Markus Müller, and Florian Marquardt, "Quantum Circuit Discovery for Fault-Tolerant Logical State Preparation with Reinforcement Learning", Physical Review X 15 4, 041012 (2025).
[17] Alexander Tianlin Hu and Andrey Boris Khesin, "Improved graph formalism for quantum circuit simulation", Physical Review A 105 2, 022432 (2022).
[18] Dimitrios Thanos, Tim Coopmans, and Alfons Laarman, Lecture Notes in Computer Science 14216, 199 (2023) ISBN:978-3-031-45331-1.
[19] Avimita Chatterjee, Archisman Ghosh, and Swaroop Ghosh, 2025 26th International Symposium on Quality Electronic Design (ISQED) 1 (2025) ISBN:979-8-3315-0942-2.
[20] Alessio Cicero, Mohammad Ali Maleki, Muhammad Waqar Azhar, Anton Frisk Kockum, and Pedro Trancoso, "Simulation of Quantum Computers: Review and Acceleration Opportunities", ACM Transactions on Quantum Computing 7 1, 1 (2026).
[21] Mingyu Kang, Wesley C. Campbell, and Kenneth R. Brown, "Quantum Error Correction with Metastable States of Trapped Ions Using Erasure Conversion", PRX Quantum 4 2, 020358 (2023).
[22] Junpyo Kim, Jungmin Cho, Hyeonseong Jeong, Dongmoon Min, Junhyuk Choi, Juwon Hong, and Jangwoo Kim, Proceedings of the 58th IEEE/ACM International Symposium on Microarchitecture 547 (2025) ISBN:9798400715730.
[23] Jannis Ruh and Simon Devitt, "Quantum Circuit Optimization and MBQC Scheduling With a Pauli Tracking Library", IEEE Transactions on Quantum Engineering 6, 1 (2025).
[24] Tuan Hai Vu, Vu Trung Duong Le, Hoai Luan Pham, Quoc Chuong Nguyen, and Yasuhiko Nakashima, "FQsun: A Configurable Wave Function-Based Quantum Emulator for Power-Efficient Quantum Simulations", IEEE Access 13, 93271 (2025).
[25] Beatrice Magni, Alexios Christopoulos, Andrea De Luca, and Xhek Turkeshi, "Anticoncentration in Clifford Circuits and Beyond: From Random Tensor Networks to Pseudomagic States", Physical Review X 15 3, 031071 (2025).
[26] Aleksandra Świerkowska, Jannik Pflieger, Emmanouil Giortamis, and Pramod Bhatotia, Abstracts of the 2026 ACM SIGMETRICS International Conference on Measurement and Modeling of Computer Systems 201 (2026) ISBN:9798400725708.
[27] Min Ye, Dave Wecker, and Nicolas Delfosse, "Beam Search Decoder for Quantum Low-Density Parity-Check Codes", PRX Quantum 7 3, 033002 (2026).
[28] Josias Old, Manuel Rispler, and Markus Müller, "Lift-connected surface codes", Quantum Science and Technology 9 4, 045012 (2024).
[29] Peter-Jan H.S. Derks, Alex Townsend-Teague, Jens Eisert, Markus S. Kesselring, Oscar Higgott, and Benjamin J. Brown, "Dynamical codes for hardware with noisy readouts", Quantum 10, 2176 (2026).
[30] Noah Berthusen and Elijah Durso-Sabina, "Simple logical quantum computation with concatenated symplectic double codes", Quantum 10, 2195 (2026).
[31] Gilad Kishony and Erez Berg, "Increasing the distance of topological codes with time vortex defects", Quantum 10, 2006 (2026).
[32] Campbell McLauchlan, György P. Gehér, and Alexandra E. Moylett, "Accommodating Fabrication Defects on Floquet Codes with Minimal Hardware Requirements", Quantum 8, 1562 (2024).
[33] Timo Hillmann, Guillaume Dauphinais, Ilan Tzitrin, and Michael Vasmer, "Single-shot and measurement-based quantum error correction via fault complexes", Physical Review A 112 4, L040401 (2025).
[34] Yusei Mori, Hideaki Hakoshima, and Keisuke Fujii, "Nontrivial Multiproduct Commutation Relation Toward Reducing T -Count in Sequential Pauli-Based Computation", PRX Quantum 7 2, 020345 (2026).
[35] György P. Gehér, Campbell McLauchlan, Earl T. Campbell, Alexandra E. Moylett, and Ophelia Crawford, "Error-corrected Hadamard gate simulated at the circuit level", Quantum 8, 1394 (2024).
[36] Asim Sharma and Avah Banerjee, 2023 IEEE International Conference on Quantum Computing and Engineering (QCE) 82 (2023) ISBN:979-8-3503-4323-6.
[37] Maurice D. Hanisch, Bence Hetényi, and James R. Wootton, "Soft information decoding with superconducting qubits", APS Open Science 1, 000019 (2026).
[38] Younghun Kim, Martin Sevior, and Muhammad Usman, "Transversal cnot gate with multicycle error correction", Physical Review Applied 23 2, 024074 (2025).
[39] Antonio deMarti iOlius, Patricio Fuentes, Román Orús, Pedro M. Crespo, and Josu Etxezarreta Martinez, "Decoding algorithms for surface codes", Quantum 8, 1498 (2024).
[40] Younghun Kim, Martin Sevior, and Muhammad Usman, "Magic state injection on IBM quantum processors above the distillation threshold", Scientific Reports 16 1, 11189 (2026).
[41] Adeeb Kabir and Yipeng Huang, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 385 (2025) ISBN:979-8-3315-5736-2.
[42] Kaiwen Zhou, Liqiang Lu, Debin Xiang, Chenning Tao, Anbang Wu, Jingwen Leng, Fangxin Liu, Mingshuai Chen, and Jianwei Yin, Proceedings of the 58th IEEE/ACM International Symposium on Microarchitecture 719 (2025) ISBN:9798400715730.
[43] Zhaohui Yang, Kai Zhang, Xinyang Tian, Xiangyu Ren, Yingjian Liu, Yunfeng Li, Dawei Ding, Jianxin Chen, and Yuan Xie, 2026 ACM/IEEE 53rd Annual International Symposium on Computer Architecture (ISCA) 2302 (2026) ISBN:979-8-3315-5065-3.
[44] Boldizsár Poór, Benjamin Rodatz, and Aleks Kissinger, "Ultra low overhead syndrome extraction for the Steane code", Quantum Science and Technology 11 4, 045009 (2026).
[45] Laura Pecorari, Sven Jandura, and Guido Pupillo, "Low-Depth Quantum Error Correction via Three-Qubit Gates in Rydberg Atom Arrays", Physical Review Letters 135 24, 240602 (2025).
[46] Muhammad Osama, Dimitrios Thanos, and Alfons Laarman, Lecture Notes in Computer Science 15698, 109 (2025) ISBN:978-3-031-90659-6.
[47] Neereja Sundaresan, Theodore J. Yoder, Youngseok Kim, Muyuan Li, Edward H. Chen, Grace Harper, Ted Thorbeck, Andrew W. Cross, Antonio D. Córcoles, and Maika Takita, "Demonstrating multi-round subsystem quantum error correction using matching and maximum likelihood decoders", Nature Communications 14 1, 2852 (2023).
[48] Younghun Kim, Hansol Kim, Jeongsoo Kang, Wonjae Choi, and Younghun Kwon, "Effectiveness of the syndrome extraction circuit with flag qubits on IBM quantum hardware", Quantum 9, 1893 (2025).
[49] Alex Townsend-Teague, Julio Magdalena de la Fuente, and Markus Kesselring, "Floquetifying the Colour Code", Electronic Proceedings in Theoretical Computer Science 384, 265 (2023).
[50] Yangsen Ye, Tan He, He-Liang Huang, Zuolin Wei, Yiming Zhang, Youwei Zhao, Dachao Wu, Qingling Zhu, Huijie Guan, Sirui Cao, Fusheng Chen, Tung-Hsun Chung, Hui Deng, Daojin Fan, Ming Gong, Cheng Guo, Shaojun Guo, Lianchen Han, Na Li, Shaowei Li, Yuan Li, Futian Liang, Jin Lin, Haoran Qian, Hao Rong, Hong Su, Shiyu Wang, Yulin Wu, Yu Xu, Chong Ying, Jiale Yu, Chen Zha, Kaili Zhang, Yong-Heng Huo, Chao-Yang Lu, Cheng-Zhi Peng, Xiaobo Zhu, and Jian-Wei Pan, "Logical Magic State Preparation with Fidelity beyond the Distillation Threshold on a Superconducting Quantum Processor", Physical Review Letters 131 21, 210603 (2023).
[51] Ameya S. Bhave, Navnil Choudhury, Andrew Nemec, and Kanad Basu, 2026 International Conference on Quantum Communications, Networking, and Computing (QCNC) 605 (2026) ISBN:979-8-3315-6110-9.
[52] Junpyo Kim, Dongmoon Min, Jungmin Cho, Hyeonseong Jeong, Ilkwon Byun, Junhyuk Choi, Juwon Hong, and Jangwoo Kim, Proceedings of the 29th ACM International Conference on Architectural Support for Programming Languages and Operating Systems, Volume 2 1 (2024) ISBN:9798400703850.
[53] Yuhao Liu, Shuohao Ping, Junyu Zhou, Ethan Decker, Justin Kalloor, Mathias Weiden, Kean Chen, Yunong Shi, Ali Javadi-Abhari, Costin Iancu, and Gushu Li, Proceedings of the 31st ACM International Conference on Architectural Support for Programming Languages and Operating Systems, Volume 2 77 (2026) ISBN:9798400723599.
[54] Huiping Lin and Zhengfeng Ji, Proceedings of the 3rd ACM SIGCOMM Workshop on Quantum Networks and Distributed Quantum Computing 42 (2026) ISBN:9798400728921.
[55] Avimita Chatterjee, Debarshi Kundu, and Swaroop Ghosh, "MITS: A Quantum Sorcerer’s Stone for Designing Surface Codes", Entropy 27 8, 812 (2025).
[56] Noah Berthusen, Dhruv Devulapalli, Eddie Schoute, Andrew M. Childs, Michael J. Gullans, Alexey V. Gorshkov, and Daniel Gottesman, "Toward a 2D Local Implementation of Quantum Low-Density Parity-Check Codes", PRX Quantum 6 1, 010306 (2025).
[57] Theerapat Tansuwannont, Balint Pato, and Kenneth R. Brown, "Adaptive syndrome measurements for Shor-style error correction", Quantum 7, 1075 (2023).
[58] Evangelia Takou and Kenneth R. Brown, "Correcting non-Pauli noise with detector error models estimated from syndrome measurements", Physical Review A 114 2, 022449 (2026).
[59] Peter-Jan H.S. Derks, Alex Townsend-Teague, Ansgar G. Burchards, and Jens Eisert, "Designing fault-tolerant circuits using detector error models", Quantum 9, 1905 (2025).
[60] Samyak Surti, Lucas Daguerre, and Isaac H. Kim, "Efficient Simulation of Logical Magic State Preparation Protocols", PRX Quantum 7 2, 020329 (2026).
[61] Linnea Grans-Samuelsson, Ryan V. Mishmash, David Aasen, Christina Knapp, Bela Bauer, Brad Lackey, Marcus P. da Silva, and Parsa Bonderson, "Improved Pairwise Measurement-Based Surface Code", Quantum 8, 1429 (2024).
[62] Shi Jie Samuel Tan, Christopher A. Pattison, Matt McEwen, and John Preskill, "Resilience of the surface code to error bursts", Physical Review A 113 2, 022450 (2026).
[63] Daan Camps, Ermal Rrapaj, Katherine Klymko, Brian Austin, and Nicholas J. Wright, ISC High Performance 2024 Research Paper Proceedings (39th International Conference) 1 (2024) ISBN:978-3-9826336-0-2.
[64] Riccardo Cioli, Elisa Ercolessi, Matteo Ippoliti, Xhek Turkeshi, and Lorenzo Piroli, "Approximate inverse measurement channel for shallow shadows", Quantum 9, 1698 (2025).
[65] Ming Wang and Frank Mueller, "Coprime Bivariate Bicycle Codes and Their Layouts on Cold Atoms", Quantum 10, 2009 (2026).
[66] Daniele Cuomo, Springer Theses 15 (2024) ISBN:978-3-031-73807-4.
[67] Runshi Zhou, Fang Zhang, Linghang Kong, Feng Wu, Hui-Hai Zhao, and Jianxin Chen, "Routing-based technique for defect mitigation in quantum error correction", Physical Review A 113 3, 032401 (2026).
[68] Aosai Zhang, Haipeng Xie, Yu Gao, Jia-Nan Yang, Zehang Bao, Zitian Zhu, Jiachen Chen, Ning Wang, Chuanyu Zhang, Jiarun Zhong, Shibo Xu, Ke Wang, Yaozu Wu, Feitong Jin, Xuhao Zhu, Yiren Zou, Ziqi Tan, Zhengyi Cui, Fanhao Shen, Tingting Li, Yihang Han, Yiyang He, Gongyu Liu, Jiayuan Shen, Han Wang, Yanzhe Wang, Hang Dong, Jinfeng Deng, Hekang Li, Zhen Wang, Chao Song, Qiujiang Guo, Pengfei Zhang, Ying Li, and H. Wang, "Demonstrating quantum error mitigation on logical qubits", Nature Communications 17 1, 1021 (2025).
[69] Arshpreet Singh Maan, Francisco Miguel Garcia Herrero, Alexandru Paler, and Valentin Savin, "Decoding correlated errors in quantum LDPC codes", Nature Communications 17 1, 3965 (2026).
[70] Aleksandra Świerkowska, Jannik Pflieger, Emmanouil Giortamis, and Pramod Bhatotia, "ECCentric: An Empirical Analysis of Quantum Error Correction Codes", ACM SIGMETRICS Performance Evaluation Review 54 1, 201 (2026).
[71] Satvik Maurya, Joshua Viszlai, Nithin Raveendran, Poulami Das, and Swamit Tannu, 2025 IEEE International Symposium on Workload Characterization (IISWC) 286 (2025) ISBN:979-8-3315-4917-6.
[72] Sheng-Chen Liu, Yu-Xuan Lin, Ying-Xiang Wang, and Liang-You Peng, "Systematic Algebraic Method to Identify Clifford Operations for Quantum Error-Correction Codes", Chinese Physics Letters 43 4, 040603 (2026).
[73] Shuang Liang, Jubo Xu, Yuncheng Lu, Hao Mark Chen, Bo Yuan, and Hongxiang Fan, 2026 31st Asia and South Pacific Design Automation Conference (ASP-DAC) 77 (2026) ISBN:979-8-3315-9123-6.
[74] Lukas Postler, Friederike Butt, Ivan Pogorelov, Christian D. Marciniak, Sascha Heußen, Rainer Blatt, Philipp Schindler, Manuel Rispler, Markus Müller, and Thomas Monz, "Demonstration of Fault-Tolerant Steane Quantum Error Correction", PRX Quantum 5 3, 030326 (2024).
[75] Sven Jandura, Laura Pecorari, and Guido Pupillo, "Surface code stabilizer measurements for Rydberg atoms", Physical Review Research 8 2, L022059 (2026).
[76] Joaquin Chung, Daniel Dilley, Ely Eastman, Alvin Gonzales, Kara Hokenstad, Md Shariful Islam, Varun Jorapur, Joseph Petrullo, Andy C. Y. Li, Bikun Li, Vasileios Niaouris, Anirudh Ramesh, Ansh Singal, Zeyu Ye, Caitao Zhan, Michael Bishof, Eric Chitambar, Jacob P. Covey, Alan Dibos, Xu Han, Liang Jiang, Prem Kumar, Jeffrey Larson, Zain H. Saleem, and Rajkumar Kettimuthu, "InterQnet: A Heterogeneous Full-Stack Approach to Co-Designing Scalable Quantum Networks", IEEE Transactions on Quantum Engineering 7, 1 (2026).
[77] Cheng-Cheng Yu, Zi-Han Chen, Yu-Hao Deng, Chao-Yang Lu, Ming-Cheng Chen, and Jian-Wei Pan, "Taming Rydberg Decay with Measurement-Based Quantum Computation", Physical Review Letters 136 16, 160601 (2026).
[78] Hengyun Zhou, Chen Zhao, Madelyn Cain, Dolev Bluvstein, Nishad Maskara, Casey Duckering, Hong-Ye Hu, Sheng-Tao Wang, Aleksander Kubica, and Mikhail D. Lukin, "Low-overhead transversal fault tolerance for universal quantum computation", Nature 646 8084, 303 (2025).
[79] Fang Zhang and Jianxin Chen, "The Hitchhiker’s Guide to the Surface Code", Entropy 28 2, 251 (2026).
[80] Max McGinley, Sthitadhi Roy, and S. A. Parameswaran, "Absolutely Stable Spatiotemporal Order in Noisy Quantum Systems", Physical Review Letters 129 9, 090404 (2022).
[81] Yinzi Xiao, Basudha Srivastava, and Mats Granath, "Exact results on finite size corrections for surface codes tailored to biased noise", Quantum 8, 1468 (2024).
[82] Yutaro Akahoshi, Riki Toshio, Jun Fujisaki, Hirotaka Oshima, Shintaro Sato, and Keisuke Fujii, "Compilation of Trotter-Based Time Evolution for Partially Fault-Tolerant Quantum Computing Architecture", PRX Quantum 6 4, 040319 (2025).
[83] Haining Pan, Thomas Iadecola, E. M. Stoudenmire, and J. H. Pixley, "Control-driven critical fluctuations across quantum trajectories", Physical Review B 114 7, 074307 (2026).
[84] Lucas Berent, Lukas Burgholzer, and Robert Wille, Proceedings of the 28th Asia and South Pacific Design Automation Conference 709 (2023) ISBN:9781450397834.
[85] Suhas Vittal, Poulami Das, and Moinuddin Qureshi, Proceedings of the 50th Annual International Symposium on Computer Architecture 1 (2023) ISBN:9798400700958.
[86] Santiago Cifuentes, Samson Wang, Thais L. Silva, Mario Berta, and Leandro Aolita, "Quantum Computational Complexity of Matrix Functions", PRX Quantum 7 2, 020364 (2026).
[87] Moritz Lange, Pontus Havström, Basudha Srivastava, Isak Bengtsson, Valdemar Bergentall, Karl Hammar, Olivia Heuts, Evert van Nieuwenburg, and Mats Granath, "Data-driven decoding of quantum error correcting codes using graph neural networks", Physical Review Research 7 2, 023181 (2025).
[88] Hansol Kim, Wonjae Choi, and Younghun Kwon, "Implementation of magic state injection within heavy-hexagon architectures", Quantum Information Processing 24 12, 384 (2025).
[89] Aleksandr Berezutskii, "mdopt: A code-agnostic tensor-network decoder for quantum error-correcting codes", Journal of Open Source Software 10 115, 9125 (2025).
[90] Maria Flors Mor-Ruiz, Julius Wallnöfer, and Wolfgang Dür, "Imperfect quantum networks with tailored resource states", Quantum 9, 1605 (2025).
[91] Dongmin Kim, Jeonggeun Seo, Youngsun Han, and Yongtae Kim, "Constraint-optimal driven allocation for scalable quantum error correction decoder scheduling", Physical Review A 113 4, 042459 (2026).
[92] Abbas B. Ziad, Ankit Zalawadiya, Canberk Topal, Joan Camps, György P. Gehér, Matthew P. Stafford, and Mark L. Turner, "Local clustering decoder as a fast and adaptive hardware decoder for the surface code", Nature Communications 16 1, 11048 (2025).
[93] Julio C. Magdalena de la Fuente, Josias Old, Alex Townsend-Teague, Manuel Rispler, Jens Eisert, and Markus Müller, "XYZ Ruby Code: Making a Case for a Three-Colored Graphical Calculus for Quantum Error Correction in Spacetime", PRX Quantum 6 1, 010360 (2025).
[94] Lennart Maximilian Seifert, Siddharth Dangwal, Frederic T. Chong, and Gokul Subramanian Ravi, Proceedings of the 29th ACM International Conference on Architectural Support for Programming Languages and Operating Systems, Volume 4 47 (2024) ISBN:9798400703911.
[95] Lukas Broers and Ludwig Mathey, "Exclusive-or encoded algebraic structure for efficient quantum dynamics", New Journal of Physics 28 4, 044508 (2026).
[96] Avimita Chatterjee, Subrata Das, and Swaroop Ghosh, "Q-Pandora Unboxed: Characterizing Resilience of Quantum Error Correction Codes Under Biased Noise", Applied Sciences 15 8, 4555 (2025).
[97] Omprakash Chandra, Gopikrishnan Muraleedharan, and Gavin K. Brennen, "Nonlocal resources for error correction in quantum low-density parity-check codes", Physical Review Research 7 3, 033247 (2025).
[98] James Keppens, Quinten Eggerickx, Vukan Levajac, George Simion, and Bart Sorée, "Qudit vs. qubit: Simulated performance of error-correction codes in higher dimensions", Physical Review A 112 3, 032435 (2025).
[99] Leon Wichette, Hans Hohenfeld, Elie Mounzer, and Linnea Grans-Samuelsson, "A partition function framework for estimating logical error curves in stabilizer codes", Quantum 10, 2175 (2026).
[100] Kaitlin N. Smith, Michael A. Perlin, Pranav Gokhale, Paige Frederick, David Owusu-Antwi, Richard Rines, Victory Omole, and Frederic Chong, Proceedings of the 50th Annual International Symposium on Computer Architecture 1 (2023) ISBN:9798400700958.
[101] Evangelia Takou and Kenneth R. Brown, "Estimating decoding graphs and hypergraphs of memory quantum error-correction experiments", Physical Review A 112 5, 052414 (2025).
[102] Brayden Goldstein-Gelb, Kun Liu, John M. Martyn, Hengyun (Harry) Zhou, Yongshan Ding, and Yuan Liu, Proceedings of the 31st ACM International Conference on Architectural Support for Programming Languages and Operating Systems, Volume 2 426 (2026) ISBN:9798400723599.
[103] Antonio Francesco Mello, Alessandro Santini, and Mario Collura, "Hybrid Stabilizer Matrix Product Operator", Physical Review Letters 133 15, 150604 (2024).
[104] Suhas Vittal, Ali Javadi-Abhari, Andrew W. Cross, Lev S. Bishop, and Moinuddin Qureshi, 2024 57th IEEE/ACM International Symposium on Microarchitecture (MICRO) 718 (2024) ISBN:979-8-3503-5057-9.
[105] Devansh Bhardwaj, Evangelia Takou, Yingjia Lin, and Kenneth R. Brown, "Adaptive Estimation of Drifting Noise in Quantum Error Correction", PRX Quantum 7 3, 033024 (2026).
[106] Anuj K. Nayak, Paul G. Baity, Peter J. Love, Nicholas Jeon, Byung-Jun Yoon, Adolfy Hoisie, and Lav R. Varshney, 2026 IEEE International Symposium on Information Theory (ISIT) 1 (2026) ISBN:979-8-3315-8004-9.
[107] Shoham Jacoby, Yotam Vaknin, Alex Retzker, and Arne L. Grimsmo, "Magic State Injection with Erasure Qubits", PRX Quantum 6 4, 040323 (2025).
[108] Yiqing Zhou, Chao Wan, Yichen Xu, Jin Peng Zhou, Kilian Q. Weinberger, and Eun-Ah Kim, "Learning to decode logical circuits", Nature Computational Science 5 12, 1158 (2025).
[109] Anbang Wu, Gushu Li, Hezi Zhang, Gian Giacomo Guerreschi, Yufei Ding, and Yuan Xie, Proceedings of the 49th Annual International Symposium on Computer Architecture 337 (2022) ISBN:9781450386104.
[110] Kento Samuel Soon, Fumiyoshi Kobayashi, Naphan Benchasattabuse, and Shota Nagayama, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 648 (2025) ISBN:979-8-3315-5736-2.
[111] Thien Nguyen, Dmitry Lyakh, Eugene Dumitrescu, David Clark, Jeff Larkin, and Alexander McCaskey, "Tensor Network Quantum Virtual Machine for Simulating Quantum Circuits at Exascale", ACM Transactions on Quantum Computing 4 1, 1 (2023).
[112] Joshua Viszlai, Jason D. Chadwick, Sarang Joshi, Gokul Subramanian Ravi, Yanjing Li, and Frederic T. Chong, Proceedings of the 52nd Annual International Symposium on Computer Architecture 1386 (2025) ISBN:9798400712616.
[113] Thomas R. Scruby, Timo Hillmann, and Joschka Roffe, "High-Threshold, Low-Overhead and Single-Shot Decodable Fault-Tolerant Quantum Memory", PRX Quantum 7 2, 020310 (2026).
[114] Boris M. Varbanov, Marc Serra-Peralta, David Byfield, and Barbara M. Terhal, "Neural network decoder for near-term surface-code experiments", Physical Review Research 7 1, 013029 (2025).
[115] Syivesh Rukmanikanthan, Hayana Dullah, Yun Xin Teoh, and Ali Najah Ahmed, "Quantum Computing Applications in Engineering: Current Status and Future Prospects", Archives of Computational Methods in Engineering 33 5, 7595 (2026).
[116] Ignacio Gustin, Luis Mantilla Calderón, Juan B Pérez-Sánchez, Chris Crebolder, Jérôme F Gonthier, Mohammad Ghazi Vakili, Yuma Nakamura, Karthik Panicker, Manav Ramprasad, Aiwei Yin, Zijian Zhang, Yunheng Zou, Varinia Bernales, and Alán Aspuru-Guzik, "El agente cuántico: automating quantum simulations", Reports on Progress in Physics 89 7, 077602 (2026).
[117] Shantom K. Borah, Asit K. Pradhan, Nithin Raveendran, Michele Pacenti, and Bane Vasić, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 2505 (2025) ISBN:979-8-3315-5736-2.
[118] Laura Pecorari, Sven Jandura, Gavin K. Brennen, and Guido Pupillo, "High-rate quantum LDPC codes for long-range-connected neutral atom registers", Nature Communications 16 1, 1111 (2025).
[119] Simon J. Evered, Marcin Kalinowski, Alexandra A. Geim, Tom Manovitz, Dolev Bluvstein, Sophie H. Li, Nishad Maskara, Hengyun Zhou, Sepehr Ebadi, Muqing Xu, Joseph Campo, Madelyn Cain, Stefan Ostermann, Susanne F. Yelin, Subir Sachdev, Markus Greiner, Vladan Vuletić, and Mikhail D. Lukin, "Probing the Kitaev honeycomb model on a neutral-atom quantum computer", Nature 645 8080, 341 (2025).
[120] Avimita Chatterjee, Koustubh Phalak, and Swaroop Ghosh, 2023 IEEE International Conference on Quantum Computing and Engineering (QCE) 70 (2023) ISBN:979-8-3503-4323-6.
[121] Sophia Fuhui Lin, Eric C Peterson, Krishanu Sankar, and Prasahnt Sivarajah, "Spatially parallel decoding for multi-qubit lattice surgery", Quantum Science and Technology 10 3, 035007 (2025).
[122] Craig Gidney, Michael Newman, Peter Brooks, and Cody Jones, "Yoked surface codes", Nature Communications 16 1, 4498 (2025).
[123] Stefano Veroni, Alexandru Paler, and Giacomo Giudice, "Universal Quantum Computation via Scalable Measurement-Free Error Correction", PRX Quantum 6 4, 040337 (2025).
[124] Yanzhang Zhu, Chen-Yu Peng, Yun Hao Chen, Siyuan Niu, Yeong-Luh Ueng, and Di Wu, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 610 (2025) ISBN:979-8-3315-5736-2.
[125] Satvik Maurya and Swamit Tannu, Proceedings of the 52nd Annual International Symposium on Computer Architecture 1370 (2025) ISBN:9798400712616.
[126] Satvik Maurya, Chaithanya Naik Mude, William D. Oliver, Benjamin Lienhard, and Swamit Tannu, Proceedings of the 50th Annual International Symposium on Computer Architecture 1 (2023) ISBN:9798400700958.
[127] Anthony Ryan O'Rourke and Simon Devitt, "Compare the pair: Rotated versus unrotated surface codes at equal logical error rates", Physical Review Research 7 3, 033074 (2025).
[128] Piotr Sierant, Marco Schirò, Maciej Lewenstein, and Xhek Turkeshi, "Entanglement Growth and Minimal Membranes in ( d+1 ) Random Unitary Circuits", Physical Review Letters 131 23, 230403 (2023).
[129] Evan T. Hockings, "QuantumACES.jl: design noise characterisation experiments for quantum computers", Journal of Open Source Software 10 107, 7707 (2025).
[130] S.N. Saadatmand, Tyler L. Wilson, Mark J. Hodson, Mark Field, Simon J. Devitt, Madhav Krishnan Vijayan, Alan Robertson, Thinh P. Le, Jannis Ruh, Alexandru Paler, Arshpreet Singh Maan, Ioana Moflic, Athena Caesura, and Josh Y. Mutus, "Superconducting qubits in the millions: The potential and limitations of modularity", Physical Review Applied 25 6, 064038 (2026).
[131] Antonio Francesco Mello, Alessandro Santini, Guglielmo Lami, Jacopo De Nardis, and Mario Collura, "Clifford Dressed Time-Dependent Variational Principle", Physical Review Letters 134 15, 150403 (2025).
[132] Yinghui Ge, Shuoying Wang, and Mengxin Li, 2025 10th International Conference on Computer and Information Processing Technology (ISCIPT) 63 (2025) ISBN:979-8-3315-9590-6.
[133] Catherine Leroux, Sophia F. Lin, Przemyslaw Bienias, Krishanu R. Sankar, Asmae Benhemou, Aleksander Kubica, and Joseph K. Iverson, "Snakes and Ladders: Adapting the Surface Code to Defects", PRX Quantum 6 4, 040302 (2025).
[134] Kai Klocke, Daniel Simm, Guo-Yi Zhu, Simon Trebst, and Michael Buchhold, "Entanglement dynamics in monitored Kitaev circuits: Loop models, symmetry classification, and quantum Lifshitz scaling", Physical Review B 111 22, 224301 (2025).
[135] Chenghong Zhu, Xian Wu, Jiahan Chen, Keming He, Junjie Wu, Xin Wang, and Lingling Lao, 2026 ACM/IEEE 53rd Annual International Symposium on Computer Architecture (ISCA) 2096 (2026) ISBN:979-8-3315-5065-3.
[136] Alessandro Sinibaldi, Antonio Francesco Mello, Mario Collura, and Giuseppe Carleo, "Nonstabilizerness of neural quantum states", Physical Review Research 7 4, 043289 (2025).
[137] Jifan Liang, Qianfan Wang, Lvzhou Li, Baodian Wei, and Xiao Ma, 2025 Asia Pacific Workshop on Data Science and Information Theory (APWDSIT) 1 (2025) ISBN:979-8-3315-2677-1.
[138] Áron Márton, Luis Colmenarez, Lukas Bödeker, and Markus Müller, "Lattice surgery-based logical state teleportation via noisy links", Physical Review Research 7 3, 033238 (2025).
[139] Florian Vigneau, Sourav Majumder, Aniket Rath, Pedro Parrado-Rodríguez, Francisco Revson Fernandes Pereira, Hsiang-Sheng Ku, Fedor Šimkovic, Stefan Pogorzalek, Tyler Jones, Nicola Wurz, Michael Renger, Jeroen Verjauw, Ping Yang, William Kindel, Frank Deppe, and Johannes Heinsoo, "Quantum Error Detection in Qubit-Resonator Star Architecture", PRX Quantum 6 4, 040369 (2025).
[140] Naphan Benchasattabuse, Michal Hajdušek, and Rodney Van Meter, "Architecture and Protocols for All-Photonic Quantum Repeaters", 2024 IEEE International Conference on Quantum Computing and Engineering (QCE) 2024 IEEE International Conference on Quantum Computing and Engineering (QCE) 01, 1879 (2024) ISBN:979-8-3315-4137-8.
[141] Zeyuan Zhou, Andrew Ji, and Yongshan Ding, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 627 (2025) ISBN:979-8-3315-5736-2.
[142] Pengyu Liu, Mingkuan Xu, Hengyun Zhou, Hanrui Wang, Umut A. Acar, and Yunong Shi, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 615 (2025) ISBN:979-8-3315-5736-2.
[143] Adrien Suau, Yiming Zhang, Purva Thakre, Yilun Zhao, Kabir Dubey, Jose A Bolanos, Arabella Schelpe, Tianyi Hao, Philip Seitz, Gian Giacomo Guerreschi, Ángela Elisa Álvarez Pérez, Reinhard Stahn, Jerome Lenssen, Brendan Reid, and Austin Fowler, "tqec: A Python package for topological quantum error correction", Journal of Open Source Software 11 120, 9142 (2026).
[144] Joshua Viszlai, Willers Yang, Sophia Lin, Junyu Liu, Natalia Nottingham, Jonathan Baker, and Frederic Chong, "qSIEVE: Efficient qLDPC Memory via Systolic Movement in Atom Arrays", ACM Transactions on Quantum Computing 7 2, 1 (2026).
[145] John Stack, Ming Wang, and Frank Mueller, "Transversal fault tolerant distributed quantum computing operations", Nature Communications 17 1, 8838 (2026).
[146] Josias Old, Stephan Tasler, Michael J. Hartmann, and Markus Müller, "Fault-Tolerant Stabilizer Measurements in Surface Codes with Three-Qubit Gates", Physical Review Letters 135 24, 240601 (2025).
[147] Sergi Masot-Llima and Artur Garcia-Saez, "Stabilizer Tensor Networks: Universal Quantum Simulator on a Basis of Stabilizer States", Physical Review Letters 133 23, 230601 (2024).
[148] Jason D. Chadwick, Gian Giacomo Guerreschi, Florian Luthi, Mateusz T. Mądzik, Fahd A. Mohiyaddin, Prithviraj Prabhu, Albert T. Schmitz, Andrew Litteken, Shavindra Premaratne, Nathaniel C. Bishop, Anne Y. Matsuura, and James S. Clarke, "Short two-qubit pulse sequences for exchange-only spin qubits in two-dimensional layouts", Physical Review A 111 5, 052616 (2025).
[149] Mauricio Gutiérrez, Juan S. Rojas-Arias, David Obando, and Chien-Yuan Chang, "Comparison of spin-qubit architectures for quantum error-correcting codes", Physical Review A 113 6, 062464 (2026).
[150] Kwok Ho Wan, Zhenghao Zhong, and Ainhoa Zapirain, "Simulating magic state cultivation with few Clifford terms", Quantum 10, 2134 (2026).
[151] Tomohiro Itogawa, Yugo Takada, Yutaka Hirano, and Keisuke Fujii, "Efficient Magic State Distillation by Zero-Level Distillation", PRX Quantum 6 2, 020356 (2025).
[152] Matt McEwen, Dave Bacon, and Craig Gidney, "Relaxing Hardware Requirements for Surface Code Circuits using Time-dynamics", Quantum 7, 1172 (2023).
[153] Noah Berthusen, Shi Jie Samuel Tan, Eric Huang, and Daniel Gottesman, "Adaptive Syndrome Extraction", PRX Quantum 6 3, 030307 (2025).
[154] J. Pablo Bonilla Ataides, Hengyun Zhou, Qian Xu, Gefen Baranes, Bikun Li, Mikhail D. Lukin, and Liang Jiang, "Constant-Overhead Fault-Tolerant Bell-Pair Distillation Using High-Rate Codes", Physical Review Letters 135 13, 130804 (2025).
[155] Cheng 澄 Ye 叶 and Pan 潘 Zhang 张, "Reconstruction of detector error model for quantum error correction", Chinese Physics B 35 7, 070301 (2026).
[156] Timo Hillmann, Lucas Berent, Armanda O. Quintavalle, Jens Eisert, Robert Wille, and Joschka Roffe, "Localized statistics decoding for quantum low-density parity-check codes", Nature Communications 16 1, 8214 (2025).
[157] Jeffrey Marshall and Dvir Kafri, "Incoherent approximation of leakage in quantum error correction", Physical Review Applied 23 5, 054025 (2025).
[158] Kohei Fujiu, Shota Nagayama, Shin Nishio, Hideaki Kawaguchi, and Takahiko Satoh, "Dense packing of the surface code: Code deformation procedures and hook-error-avoiding gate scheduling", Physical Review A 113 4, 042412 (2026).
[159] Oscar Higgott and Nikolas P. Breuckmann, "Constructions and Performance of Hyperbolic and Semi-Hyperbolic Floquet Codes", PRX Quantum 5 4, 040327 (2024).
[160] Yotam Vaknin, Shoham Jacoby, Arne Grimsmo, and Alex Retzker, "High Rate Magic State Cultivation on the Surface Code", PRX Quantum 7 1, 010353 (2026).
[161] Younghun Kim, Martin Sevior, and Muhammad Usman, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 482 (2025) ISBN:979-8-3315-5736-2.
[162] Conner LeMaire, Andrew A. Allocca, J. H. Pixley, Thomas Iadecola, and Justin H. Wilson, "Separate measurement- and feedback-driven entanglement transitions in the stochastic control of chaos", Physical Review B 110 1, 014310 (2024).
[163] Adrien Suau, Gabriel Staffelbach, and Aida Todri-Sanial, "qprof: A gprof-Inspired Quantum Profiler", ACM Transactions on Quantum Computing 4 1, 1 (2023).
[164] Rob A. Damsteegt, Masoud Babaie, Sebastian Feld, and Fabio Sebastiano, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 1076 (2025) ISBN:979-8-3315-5736-2.
[165] Florian Brökemeier, S. Momme Hengstenberg, James W. T. Keeble, Caroline E. P. Robin, Federico Rocco, and Martin J. Savage, "Quantum magic and multipartite entanglement in the structure of nuclei", Physical Review C 111 3, 034317 (2025).
[166] Ke Chen, Mingzheng Zhu, Haishan Song, Wei Xie, and Xiang-Yang Li, "Hypergraph-based approximate maximum likelihood decoding for quantum codes under circuit-level noise", Physical Review Research 8 2, 023191 (2026).
[167] Francesco Pio Barone, Daniel Jaschke, Ilaria Siloi, and Simone Montangero, "Color code thresholds under circuit-level noise beyond the Pauli framework", Quantum Science and Technology 11 3, 035065 (2026).
[168] Xiang Fang, Keyi Yin, Yuchen Zhu, Jixuan Ruan, Dean Tullsen, Zhiding Liang, Andrew Sornborger, Ang Li, Travis Humble, Yufei Ding, and Yunong Shi, Proceedings of the 52nd Annual International Symposium on Computer Architecture 1402 (2025) ISBN:9798400712616.
[169] Sam Winnick and Jennifer Paykin, "Condensed encodings of projective Clifford operations in arbitrary dimension", Journal of Mathematical Physics 66 7, 072202 (2025).
[170] Jintae Kim, Jung Hoon Han, and Isaac H. Kim, "Fault-tolerant Quantum Error Correction Using a Linear Array of Emitters", Quantum 9, 1676 (2025).
[171] Mackenzie H. Shaw and Barbara M. Terhal, "Lowering Connectivity Requirements for Bivariate Bicycle Codes Using Morphing Circuits", Physical Review Letters 134 9, 090602 (2025).
[172] Marc Serra-Peralta, Mackenzie H. Shaw, and Barbara M. Terhal, "Decoding across Transversal Clifford Gates in the Surface Code", PRX Quantum 7 1, 010335 (2026).
[173] Shinichi Sunami, Yutaka Hirano, Toshihide Hinokuma, and Hayata Yamasaki, "Entanglement Boosting: Low-Volume Logical Bell Pair Preparation for Distributed Fault-Tolerant Quantum Computation", PRX Quantum 7 3, 033014 (2026).
[174] Ilya A. Simakov and Ilya S. Besedin, "Low-overhead quantum error-correction codes with a cyclic topology", Physical Review A 111 1, 012444 (2025).
[175] Keyi Yin, Xiang Fang, Travis S. Humble, Ang Li, Yunong Shi, and Yufei Ding, 2024 57th IEEE/ACM International Symposium on Microarchitecture (MICRO) 750 (2024) ISBN:979-8-3503-5057-9.
[176] Joshua Viszlai, Willers Yang, Sophia Fuhui Lin, Junyu Liu, Natalia Nottingham, Jonathan M Baker, and Frederic T Chong, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 688 (2025) ISBN:979-8-3315-5736-2.
[177] Samson Wang, Sam McArdle, and Mario Berta, "Qubit-Efficient Randomized Quantum Algorithms for Linear Algebra", PRX Quantum 5 2, 020324 (2024).
[178] Robin Harper and Steven T. Flammia, "Learning Correlated Noise in a 39-Qubit Quantum Processor", PRX Quantum 4 4, 040311 (2023).
[179] Keyi Yin, Xiang Fang, Zhuo Chen, David Hayes, Eneet Kaur, Reza Nejabati, Hartmut Haeffner, Wes Campbell, Eric Hudson, Jens Palsberg, Travis Humble, and Yufei Ding, Proceedings of the 31st ACM International Conference on Architectural Support for Programming Languages and Operating Systems, Volume 2 1007 (2026) ISBN:9798400723599.
[180] Stefano Markidis, Proceedings of the SC '23 Workshops of the International Conference on High Performance Computing, Network, Storage, and Analysis 1478 (2023) ISBN:9798400707858.
[181] V. I. Yashin, "A Streamlined Demonstration That Stabilizer Circuits Simulation Reduces to Boolean Linear Algebra", Lobachevskii Journal of Mathematics 46 6, 2687 (2025).
[182] Oscar Higgott, "PyMatching: A Python Package for Decoding Quantum Codes with Minimum-Weight Perfect Matching", ACM Transactions on Quantum Computing 3 3, 1 (2022).
[183] Sreemayee Aditya, Xhek Turkeshi, and Piotr Sierant, "Growth and spreading of quantum resources under random circuit dynamics", Physical Review Research 8 3, 033062 (2026).
[184] Ilkwon Byun, Junpyo Kim, Dongmoon Min, Ikki Nagaoka, Kosuke Fukumitsu, Iori Ishikawa, Teruo Tanimoto, Masamitsu Tanaka, Koji Inoue, and Jangwoo Kim, Proceedings of the 49th Annual International Symposium on Computer Architecture 366 (2022) ISBN:9781450386104.
[185] Vivien Vandaele, Simon Martiel, Simon Perdrix, and Christophe Vuillot, " Optimal Hadamard Gate Count for Clifford+ T Synthesis of Pauli Rotations Sequences ", ACM Transactions on Quantum Computing 5 1, 1 (2024).
[186] Vladlen Galetsky, Nilesh Vyas, Alberto Comin, and Janis Nötzel, "Feasibility of logical Bell state generation in memory assisted quantum networks", Physical Review Research 7 3, 033090 (2025).
[187] Connor T. Hann, Kyungjoo Noh, Harald Putterman, Matthew H. Matheny, Joseph K. Iverson, Michael T. Fang, Christopher Chamberland, Oskar Painter, and Fernando G.S.L. Brandão, "Hybrid Cat-Transmon Architecture for Scalable, Hardware-Efficient Quantum Error Correction", PRX Quantum 6 3, 030305 (2025).
[188] Mohamad Mousa, Amit Jamadagni, and Eugene Dumitrescu, "Composite-dimensional topological codes with boundaries and defects", Physical Review A 114 1, 012438 (2026).
[189] Seok-Hyung Lee, Andrew Li, and Stephen D. Bartlett, "Color code decoder with improved scaling for correcting circuit-level noise", Quantum 9, 1609 (2025).
[190] Sean R. Garner, Nathan M. Myers, Meng Wang, Samuel Stein, Chenxu Liu, and Ang Li, "Simulation of thermal-relaxation noise for quantum error correction", Physical Review Research 8 2, 023134 (2026).
[191] Lucas Berent, Lukas Burgholzer, Peter-Jan H.S. Derks, Jens Eisert, and Robert Wille, "Decoding quantum color codes with MaxSAT", Quantum 8, 1506 (2024).
[192] Nadish de Silva, Wilfred Salmon, and Ming Yin, "Fast algorithms for classical specifications of stabiliser states and Clifford gates", Quantum 9, 1586 (2025).
[193] Benjamin Gys, Lander Burgelman, Kristiaan De Greve, Georges Gielen, and Francky Catthoor, "Hybrid Hamiltonian Simulation Approach for the Analysis of Quantum Error Correction Protocol Robustness", IEEE Transactions on Quantum Engineering 5, 1 (2024).
[194] Panagiotis Papanikolaou, Ryan Hou, Jennifer Volk, and George Tzimpragos, 2026 ACM/IEEE 53rd Annual International Symposium on Computer Architecture (ISCA) 872 (2026) ISBN:979-8-3315-5065-3.
[195] Robin Harper, Constance Lainé, Evan T. Hockings, Campbell McLauchlan, Georgia M. Nixon, Benjamin J. Brown, and Stephen D. Bartlett, "Characterising the failure mechanisms of error-corrected quantum logic gates", Nature Communications 17 1, 5039 (2026).
[196] Tyler LeBlond, Peter Groszkowski, Justin G. Lietz, Christopher M. Seck, and Ryan S. Bennink, "Logical error rates for the surface code under a mixed coherent and stochastic circuit-level noise model inspired by trapped ions", Physical Review Research 7 4, 043184 (2025).
[197] Shouzhen Gu, Alex Retzker, and Aleksander Kubica, "Fault-tolerant quantum architectures based on erasure qubits", Physical Review Research 7 1, 013249 (2025).
[198] Noah Berthusen, Joan Dreiling, Cameron Foltz, John P. Gaebler, Thomas M. Gatterman, Dan Gresh, Nathan Hewitt, Michael Mills, Steven A. Moses, Brian Neyenhuis, Peter Siegfried, and David Hayes, "Experiments with the four-dimensional surface code on a quantum charge-coupled device quantum computer", Physical Review A 110 6, 062413 (2024).
[199] Joonas Majaniemi and Elisha S Matekole, "Reducing quantum error correction overhead using soft information", Quantum Science and Technology 11 2, 025024 (2026).
[200] Joshua Viszlai, Sophia Lin, Siddharth Dangwal, Conor Bradley, Vikram Ramesh, Jonathan Baker, Hannes Bernien, and Frederic T. Chong, 2025 IEEE International Symposium on High Performance Computer Architecture (HPCA) 261 (2025) ISBN:979-8-3315-0647-6.
[201] Tianjie Hu, Jindi Wu, and Qun Li, 2026 IEEE 46th International Conference on Distributed Computing Systems (ICDCS) 982 (2026) ISBN:979-8-3195-2979-4.
[202] Piotr Sierant and Xhek Turkeshi, "Controlling Entanglement at Absorbing State Phase Transitions in Random Circuits", Physical Review Letters 130 12, 120402 (2023).
[203] Zi-Han Chen, Ming-Cheng Chen, Chao-Yang Lu, and Jian-Wei Pan, "Transversal Logical Clifford Gates on the Rotated Surface Code with Reconfigurable Neutral Atom Arrays", Physical Review Letters 136 13, 130601 (2026).
[204] Anuththara Hettiarachchi and Kapila Dissanayaka, 2025 7th International Conference on Advancements in Computing (ICAC) 1 (2025) ISBN:979-8-3315-6222-9.
[205] Taylor Lee Patti, Thien Nguyen, Justin Gage Lietz, Alex J McCaskey, and Brucek Khailany, Proceedings of the International Conference for High Performance Computing, Networking, Storage and Analysis 762 (2025) ISBN:9798400714665.
[206] Ido Zuk, Daniel Cohen, Alexey V. Gorshkov, and Alex Retzker, "Robust gates with spin-locked superconducting qubits", Physical Review Research 6 1, 013217 (2024).
[207] Chaithanya Naik Mude and Swamit Tannu, Proceedings of the 58th IEEE/ACM International Symposium on Microarchitecture 579 (2025) ISBN:9798400715730.
[208] Bence Hetényi and James R. Wootton, "Tailoring quantum error correction to spin qubits", Physical Review A 109 3, 032433 (2024).
[209] Vladlen Galetsky, Nilesh Vyas, Alberto Comin, and Janis Nötzel, 2025 International Conference on Quantum Communications, Networking, and Computing (QCNC) 677 (2025) ISBN:979-8-3315-3159-1.
[210] Misty A. Wahl, Andrea Mari, Nathan Shammah, William J. Zeng, and Gokul Subramanian Ravi, 2023 IEEE International Conference on Quantum Computing and Engineering (QCE) 888 (2023) ISBN:979-8-3503-4323-6.
[211] Mohamed A. Shalby, Renyu Wang, Denis Sedov, and Leonid P. Pryadko, "Optimized noise-resilient surface code teleportation interfaces", Physical Review A 112 2, L020403 (2025).
[212] Berend Klaver, Katharina Ludwig, Anette Messinger, Stefan M. A. Rombouts, Michael Fellner, Kilian Ender, and Wolfgang Lechner, "Parity flow formalism: Tracking quantum information throughout computation", Physical Review Research 8 1, 013095 (2026).
[213] Sami Rashid Mohammed Shibah, "Adaptive Reinforcement Learning for Autonomous Quantum Error Correction in Surface Codes", (2025).
[214] Naphan Benchasattabuse, Michal Hajdušek, and Rodney Van Meter, "Bridging All-Photonic and Memory-Based Quantum Repeaters", IEEE Transactions on Quantum Engineering 7, 1 (2026).
[215] Michele Pacenti, Asit K. Pradhan, Shantom K. Borah, and Bane Vasić, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 148 (2025) ISBN:979-8-3315-5736-2.
[216] Min Ye and Nicolas Delfosse, "Quantum error correction for long chains of trapped ions", Quantum 9, 1920 (2025).
[217] Evan T. Hockings, Andrew C. Doherty, and Robin Harper, "Scalable Noise Characterization of Syndrome-Extraction Circuits with Averaged Circuit Eigenvalue Sampling", PRX Quantum 6 1, 010334 (2025).
[218] Noah Shutty, Michael Newman, and Benjamin Villalonga, "Efficient Near-Optimal Decoding of the Surface Code through Ensembling", Physical Review Letters 136 7, 070603 (2026).
[219] Hugo Jacinto, Élie Gouzien, and Nicolas Sangouard, "Network requirements for distributed quantum computation", Physical Review Research 8 1, 013205 (2026).
[220] Xuandong Sun, Longcheng Li, Zhiyi Wu, Zechen Guo, Peisheng Huang, Wenhui Huang, Qixian Li, Yongqi Liang, Yiting Liu, Daxiong Sun, Zilin Wang, Changrong Xie, Yuzhe Xiong, Xiaohan Yang, Jiajian Zhang, Jiawei Zhang, Libo Zhang, Zihao Zhang, Weijie Guo, Ji Jiang, Song Liu, Xiayu Linpeng, Jingjing Niu, Jiawei Qiu, Wenhui Ren, Ziyu Tao, Yuefeng Yuan, Yuxuan Zhou, Ji Chu, Youpeng Zhong, Xiaoming Sun, and Dapeng Yu, "Logical Operations with a Dynamical Qubit in Floquet-Bacon-Shor Code", Physical Review Letters 135 22, 220601 (2025).
[221] Laura Caune, Luka Skoric, Nick S. Blunt, Archibald Ruban, Jimmy McDaniel, Joseph A. Valery, Andrew D. Patterson, Alexander V. Gramolin, Joonas Majaniemi, Kenton M. Barnes, Tomasz Bialas, Okan Buğdaycı, Ophelia Crawford, György P. Gehér, Hari Krovi, Elisha Matekole, Canberk Topal, Stefano Poletto, Michael Bryant, Kalan Snyder, Neil I. Gillespie, Glenn Jones, Kauser Johar, Earl T. Campbell, and Alexander D. Hill, "Demonstrating real-time and low-latency quantum error correction with superconducting qubits", Nature Communications 17 1, 7383 (2026).
[222] Younghun Kim, Jeongsoo Kang, and Younghun Kwon, "Design of quantum error correcting code for biased error on heavy-hexagon structure", Quantum Information Processing 22 6, 230 (2023).
[223] John F Kam, Spiro Gicev, Kavan Modi, Angus Southwell, and Muhammad Usman, "Detrimental non-Markovian errors for surface code memory", Quantum Science and Technology 10 3, 035060 (2025).
[224] Bence Hetényi and James R. Wootton, "Creating Entangled Logical Qubits in the Heavy-Hex Lattice with Topological Codes", PRX Quantum 5 4, 040334 (2024).
[225] Ashutosh Kumar, Majid Haghparast, and Lauri Kettunen, "Resgru: Syndrome decoder for heavy-hexagon quantum error correction code", Physica Scripta 101 28, 285102 (2026).
[226] Jaime Alvarado-Valiente, Javier Romero-Álvarez, Danel Arias, Erik B. Terres, Jose Garcia-Alonso, Enrique Moguel, Pablo García Bringas, and Juan M. Murillo, Lecture Notes in Computer Science 14001, 180 (2023) ISBN:978-3-031-40724-6.
[227] Bálint Domokos, Áron Márton, and János K. Asbóth, "Characterization of errors in a CNOT between surface code patches", Quantum 8, 1577 (2024).
[228] Kai Zhang, Dingchao Gao, Zhaohui Yang, Runshi Zhou, Fangming Liu, Zhengfeng Ji, and Jianxin Chen, 2026 Design, Automation & Test in Europe Conference (DATE) 1 (2026) ISBN:978-3-9826741-1-7.
[229] Hanyan Cao, Shoukuan Zhao, Dongyang Feng, Zisong Shen, Haisheng Yan, Tang Su, Weijie Sun, Huikai Xu, Feng Pan, Haifeng Yu, and Pan Zhang, "Exact Decoding of Quantum Error-Correcting Codes", Physical Review Letters 134 19, 190603 (2025).
[230] Craig Gidney, "Inplace Access to the Surface Code Y Basis", Quantum 8, 1310 (2024).
[231] Mingyu Kang, Yingjia Lin, Hanwen Yao, Mert Gökduman, Arianna Meinking, and Kenneth R. Brown, "QUITS: A modular Qldpc code circUIT Simulator", Quantum 9, 1931 (2025).
[232] Hany Ali, Jorge Marques, Ophelia Crawford, Joonas Majaniemi, Marc Serra-Peralta, David Byfield, Boris Varbanov, Barbara M. Terhal, Leonardo DiCarlo, and Earl T. Campbell, "Reducing the error rate of a superconducting logical qubit using analog readout information", Physical Review Applied 22 4, 044031 (2024).
[233] Daniel Báscones, Francisco Garcia-Herrero, and Javier Valls, "Exploring the FPGA and ASIC design space of belief propagation and ordered statistics decoders for quantum error correction codes", EPJ Quantum Technology 12 1, 140 (2025).
[234] Ben Barber, Kenton M. Barnes, Tomasz Bialas, Okan Buğdaycı, Earl T. Campbell, Neil I. Gillespie, Kauser Johar, Ram Rajan, Adam W. Richardson, Luka Skoric, Canberk Topal, Mark L. Turner, and Abbas B. Ziad, "A real-time, scalable, fast and resource-efficient decoder for a quantum computer", Nature Electronics 8 1, 84 (2025).
[235] Craig Gidney, "A Pair Measurement Surface Code on Pentagons", Quantum 7, 1156 (2023).
[236] Frederik K. Marqversen, Gefen Baranes, Maxim Sirotin, and Johannes Borregaard, "Fault-tolerant interfaces for modular quantum computing on diverse qubit platforms", Physical Review Research 8 2, 023097 (2026).
[237] Cole Kelson-Packer and Akimasa Miyake, "Phase transitions in (2+1)D subsystem-symmetric monitored quantum circuits", Physical Review B 111 7, 075109 (2025).
[238] Pau Escofet, Eduard Alarcón, Sergi Abadal, Andrii Semenov, Niall Murphy, Elena Blokhina, and Carmen G. Almudéver, "Synthesizing an optimal spin-qubit shuttling-bus architecture for the surface code", Physical Review A 113 3, 032404 (2026).
[239] Seok-Hyung Lee, Felix Thomsen, Nicholas Fazio, Benjamin J. Brown, and Stephen D. Bartlett, "Low-Overhead Magic State Distillation with Color Codes", PRX Quantum 6 3, 030317 (2025).
[240] Van Duy Tran, Tuan Hai Vu, Vu Trung Duong Le, Hoai Luan Pham, Cao Doanh Bui, and Yasuhiko Nakashima, "HPQEA: A Scalable FPGA‐Based High‐Performance Quantum Emulator With Parallel Architecture and High‐Bandwidth Memory Optimization", Concurrency and Computation: Practice and Experience 38 18, e70932 (2026).
[241] SiYing Wang, Yue Yan, ZhiXin Xia, and Xiang-Bin Wang, "Effect of multiqubit correlated noise on surface-code thresholds", Physical Review A 112 6, 062419 (2025).
[242] Balint Pato, Theerapat Tansuwannont, Shilin Huang, and Kenneth R. Brown, "Optimization Tools for Distance-Preserving Flag Fault-Tolerant Error Correction", PRX Quantum 5 2, 020336 (2024).
[243] Yugo Takada and Keisuke Fujii, "Improving Threshold for Fault-Tolerant Color-Code Quantum Computing by Flagged Weight Optimization", PRX Quantum 5 3, 030352 (2024).
[244] Manuel S. Rudolph, Tyson Jones, Yanting Teng, Armando Angrisani, and Zoë Holmes, "Pauli Propagation: A Computational Framework for Simulating Quantum Systems", PRX Quantum 7 3, 032001 (2026).
[245] Florian Hopfmueller, Maxime Tremblay, Philippe St-Jean, Baptiste Royer, and Marc-Antoine Lemonde, "Bosonic Pauli+: Efficient Simulation of Concatenated Gottesman-Kitaev-Preskill Codes", Quantum 8, 1539 (2024).
[246] György P. Gehér, Marcin Jastrzebski, Earl T. Campbell, and Ophelia Crawford, "To reset, or not to reset—that is the question", npj Quantum Information 11 1, 39 (2025).
[247] Jason D. Chadwick, Mariesa H. Teo, Joshua Viszlai, Willers Yang, and Frederic T. Chong, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 658 (2025) ISBN:979-8-3315-5736-2.
[248] Johannes Nokkala, Jyrki Piilo, and Ginestra Bianconi, "Complex quantum networks: a topical review", Journal of Physics A: Mathematical and Theoretical 57 23, 233001 (2024).
[249] Ji Liu, Alvin Gonzales, Benchen Huang, Zain Hamid Saleem, and Paul Hovland, 2025 IEEE International Symposium on High Performance Computer Architecture (HPCA) 158 (2025) ISBN:979-8-3315-0647-6.
[250] Pedro R. Nicácio Falcão, Piotr Sierant, Jakub Zakrzewski, and Emanuele Tirrito, "Nonstabilizerness Dynamics in Many-Body Localized Systems", Physical Review Letters 135 24, 240404 (2025).
[251] Ashlesha Patil and Saikat Guha, "A Graphical Rule Book for Clifford Manipulations of Stabilizer States", IEEE Transactions on Quantum Engineering 7, 1 (2026).
[252] Qifan Huang, Li Zhou, Wang Fang, Mengyu Zhao, and Mingsheng Ying, "Efficient Formal Verification of Quantum Error Correcting Programs", Proceedings of the ACM on Programming Languages 9 PLDI, 1068 (2025).
[253] Ratun Rahman and Dinh C. Nguyen, "Quantum Error Mitigation: A Comprehensive Survey", ACM Computing Surveys 3842667 (2026).
[254] Dominik Hangleiter, Marcin Kalinowski, Dolev Bluvstein, Madelyn Cain, Nishad Maskara, Xun Gao, Aleksander Kubica, Mikhail D. Lukin, and Michael J. Gullans, "Fault-Tolerant Compiling of Classically Hard Instantaneous Quantum Polynomial Circuits on Hypercubes", PRX Quantum 6 2, 020338 (2025).
[255] J. A. Muniz, D. Crow, H. Kim, J. M. Kindem, W. B. Cairncross, A. Ryou, T. C. Bohdanowicz, C.-A. Chen, Y. Ji, A. M. W. Jones, E. Megidish, C. Nishiguchi, M. Urbanek, L. Wadleigh, T. Wilkason, D. Aasen, K. Barnes, J. M. Bello-Rivas, I. Bloomfield, G. Booth, A. Brown, M. O. Brown, K. Cassella, G. Cowan, J. Epstein, M. Feldkamp, C. Griger, Y. Hassan, A. Heinz, E. Halperin, T. Hofler, F. Hummel, M. Jaffe, E. Kapit, K. Kotru, J. Lauigan, J. Marjanovic, M. Meredith, M. McDonald, R. Morshead, S. Narayanaswami, K. A. Pawlak, K. L. Pudenz, D. Rodríguez Pérez, P. Sabharwal, J. Simon, A. Smull, M. Sorensen, D. T. Stack, M. Stone, L. Taneja, R. J. M. van de Veerdonk, Z. Vendeiro, R. T. Weverka, K. White, T.-Y. Wu, X. Xie, E. Zalys-Geller, X. Zhang, J. King, B. J. Bloom, and M. A. Norcia, "Repeated Ancilla Reuse for Logical Computation on a Neutral Atom Quantum Computer", Physical Review X 15 4, 041040 (2025).
[256] Narges Alavisamani, Suhas Vittal, Ramin Ayanzadeh, Poulami Das, and Moinuddin Qureshi, Proceedings of the 29th ACM International Conference on Architectural Support for Programming Languages and Operating Systems, Volume 3 818 (2024) ISBN:9798400703867.
[257] Dolev Bluvstein, Alexandra A. Geim, Sophie H. Li, Simon J. Evered, J. Pablo Bonilla Ataides, Gefen Baranes, Andi Gu, Tom Manovitz, Muqing Xu, Marcin Kalinowski, Shayan Majidy, Christian Kokail, Nishad Maskara, Elias C. Trapp, Luke M. Stewart, Simon Hollerith, Hengyun Zhou, Michael J. Gullans, Susanne F. Yelin, Markus Greiner, Vladan Vuletić, Madelyn Cain, and Mikhail D. Lukin, "A fault-tolerant neutral-atom architecture for universal quantum computation", Nature 649 8095, 39 (2026).
[258] Robert Joo, "Decoding the surface code with a spatio-temporal transformer", EPJ Quantum Technology 13 1, 52 (2026).
[259] Zejun Liu and Bryan K. Clark, "Classical simulability of Clifford+T circuits with Clifford-augmented matrix product states", Physical Review Research 8 2, 023116 (2026).
[260] Enrique Moguel, Jose Garcia-Alonso, and Juan M. Murillo, Quantum Software 189 (2024) ISBN:978-3-031-64135-0.
[261] John Blue, Harshil Avlani, Zhiyang He, Liu Ziyin, and Isaac L. Chuang, "Machine Learning Decoding of Circuit-Level Noise for Bivariate Bicycle Codes", Quantum 10, 2149 (2026).
[262] Jaime Alvarado-Valiente, Javier Romero-Álvarez, Enrique Moguel, José García-Alonso, and Juan M. Murillo, "Technological diversity of quantum computing providers: a comparative study and a proposal for API Gateway integration", Software Quality Journal 32 1, 53 (2024).
[263] Yilun Zhao, Yu Chen, He Li, Ying Wang, Kaiyan Chang, Bingmeng Wang, Bing Li, and Yinhe Han, Quantum Computational AI 135 (2026) ISBN:9780443302596.
[264] Lucas Daguerre and Mohan Sarovar, "Real-time adaptation of quantum noise channel estimates", Physical Review A 111 6, 062609 (2025).
[265] Yaniv Kurman, Lior Ella, Nir Halay, Oded Wertheim, and Yonatan Cohen, "Controller-decoder system requirements derived by implementing Shor's algorithm with surface code", Quantum 10, 2170 (2026).
[266] Xiaosi Xu, Simon Benjamin, Jianxin Chen, Jinzhao Sun, Xiao Yuan, and Pan Zhang, "A Herculean task: classical simulation of quantum computers", Science Bulletin 70 23, 4104 (2025).
[267] Sana Javed, Sergio Colet, Francisco Garcia-Herrero, Óscar Ruano, Juan Antonio Maestro, Bane Vasić, and Mark F. Flanagan, "Low-Complexity Syndrome-Based Linear Programming Decoding of Quantum LDPC Codes", IEEE Transactions on Quantum Engineering 7, 1 (2026).
[268] Jiajun Chen, Jierui Peng, and Jingyi Liu, "Two-Stage Neural Residual Decoding for FastSurface-Code Quantum Error Correction", (2026).
[269] Victor Wei, W. A. Coish, Pooya Ronagh, and Christine A. Muschik, "Neural-shadow quantum state tomography", Physical Review Research 6 2, 023250 (2024).
[270] Abhinav Anand and Kenneth R. Brown, "Hamiltonian-based graph-state ansatz for variational quantum algorithms", Physical Review A 111 1, 012437 (2025).
[271] Laura Pecorari and Guido Pupillo, "Quantum low-density parity-check codes for erasure-biased atomic quantum processors", Physical Review A 112 5, 052417 (2025).
[272] Qian Xu, J. Pablo Bonilla Ataides, Christopher A. Pattison, Nithin Raveendran, Dolev Bluvstein, Jonathan Wurtz, Bane Vasić, Mikhail D. Lukin, Liang Jiang, and Hengyun Zhou, "Constant-overhead fault-tolerant quantum computation with reconfigurable atom arrays", Nature Physics 20 7, 1084 (2024).
[273] Yaniv Kurman, Lior Ella, Ramon Szmuk, Oded Wertheim, Benedikt Dorschner, Sam Stanwyck, and Yonatan Cohen, "Benchmarking the Ability of a Controller to Execute Quantum Error Corrected Non-Clifford Circuits", IEEE Transactions on Quantum Engineering 6, 1 (2025).
[274] Takumi Kobori and Synge Todo, "Bayesian inference of general noise-model parameters from the syndrome statistics of surface codes", Physical Review A 112 5, 052448 (2025).
[275] Hyunjoon Shin, Seokhyeon Lee, Myeongjin Kwak, and Yongtae Kim, Proceedings of the 40th ACM International Conference on Supercomputing 1296 (2026) ISBN:9798400725227.
[276] Keyi Yin, Hezi Zhang, Xiang Fang, Yunong Shi, Travis S. Humble, Ang Li, and Yufei Ding, Proceedings of the 30th ACM International Conference on Architectural Support for Programming Languages and Operating Systems, Volume 1 876 (2025) ISBN:9798400706981.
[277] Anthony Micciche, Feroz Ahmed Mian, Anasua Chatterjee, Andrew McGregor, and Stefan Krastanov, "Optimizing compilation of error correction codes for 2×n quantum dot arrays and its NP hardness", Physical Review Research 8 1, 013212 (2026).
[278] Benjamin Bichsel, Anouk Paradis, Maximilian Baader, and Martin Vechev, "Abstraqt: Analysis of Quantum Circuits via Abstract Stabilizer Simulation", Quantum 7, 1185 (2023).
[279] Nils Quetschlich and Olivia Di Matteo, "An experience-based classification of quantum bugs in quantum software", Computing 107 10, 193 (2025).
[280] Johannes Bausch, Andrew W. Senior, Francisco J. H. Heras, Thomas Edlich, Alex Davies, Michael Newman, Cody Jones, Kevin Satzinger, Murphy Yuezhen Niu, Sam Blackwell, George Holland, Dvir Kafri, Juan Atalaya, Craig Gidney, Demis Hassabis, Sergio Boixo, Hartmut Neven, and Pushmeet Kohli, "Learning high-accuracy error decoding for quantum processors", Nature 635 8040, 834 (2024).
[281] Maxwell Poster, Sayam Sethi, and Jonathan M. Baker, 2024 IEEE International Conference on Quantum Computing and Engineering (QCE) 1058 (2024) ISBN:979-8-3315-4137-8.
[282] Eric Kubischta and Ian Teixeira, "Family of Quantum Codes with Exotic Transversal Gates", Physical Review Letters 131 24, 240601 (2023).
[283] Joan Camps, Ophelia Crawford, György P Gehér, Alexander V Gramolin, Matthew P Stafford, and Mark L Turner, "Leakage mobility in superconducting qubits as a leakage reduction unit", Physica Scripta 101 11, 115107 (2026).
[284] György P. Gehér, Ophelia Crawford, and Earl T. Campbell, "Tangling Schedules Eases Hardware Connectivity Requirements for Quantum Error Correction", PRX Quantum 5 1, 010348 (2024).
[285] Seok-Hyung Lee, Lucas H. English, and Stephen D. Bartlett, "Efficient post-selection for general quantum LDPC Codes", npj Quantum Information 12 1, 96 (2026).
[286] Guglielmo Lami and Mario Collura, "Unveiling the Stabilizer Group of a Matrix Product State", Physical Review Letters 133 1, 010602 (2024).
[287] Michele Pacenti, Dimitris Chytas, and Bane Vasić, "Construction and Decoding of Quantum Margulis Codes", Quantum 10, 2101 (2026).
[288] Hansol Kim, Wonjae Choi, and Younghun Kwon, "About Implementation of Magic State Injection in Heavy-Hexagon Structure", Mathematics 13 23, 3874 (2025).
[289] Yilun Zhao, Yu Chen, He Li, Ying Wang, Kaiyan Chang, Bingmeng Wang, Bing Li, and Yinhe Han, 2023 IEEE/ACM International Conference on Computer Aided Design (ICCAD) 1 (2023) ISBN:979-8-3503-2225-5.
[290] Piotr Sierant, Marco Schirò, Maciej Lewenstein, and Xhek Turkeshi, "Measurement-induced phase transitions in (d+1) -dimensional stabilizer circuits", Physical Review B 106 21, 214316 (2022).
[291] Jacob S. Palmer and Kaitlin N. Smith, "Boundaries of acceptable defectiveness: redefining surface code robustness under heterogeneous noise", npj Unconventional Computing 3 1, 40 (2026).
[292] Kaavya Sahay, Yingjia Lin, Shilin Huang, Kenneth R. Brown, and Shruti Puri, "Error Correction of Transversal cnot Gates for Scalable Surface-Code Computation", PRX Quantum 6 2, 020326 (2025).
[293] Mark L. Turner, Earl T. Campbell, Ophelia Crawford, Neil I. Gillespie, and Joan Camps, "Scalable Decoding Protocols for Fast Transversal Logic in the Surface Code", PRX Quantum 7 1, 010320 (2026).
[294] Hayato Goto, "High-performance fault-tolerant quantum computing with many-hypercube codes", Science Advances 10 36, eadp6388 (2024).
[295] Alexander Knapen, Guanchen Tao, Jacob Mack, Tomas Bruno, Mehdi Saligane, Dennis Sylvester, Qirui Zhang, and Gokul Subramanian Ravi, 2026 IEEE International Symposium on High Performance Computer Architecture (HPCA) 1 (2026) ISBN:979-8-3315-9302-5.
[296] Evan Sutcliffe, Bhargavi Jonnadula, Claire Le Gall, Alexandra E. Moylett, and Coral M. Westoby, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 649 (2025) ISBN:979-8-3315-5736-2.
[297] Ming Wang, Ang Li, and Frank Mueller, 2026 IEEE International Symposium on High Performance Computer Architecture (HPCA) 1 (2026) ISBN:979-8-3315-9302-5.
[298] Ryo Mikami and Hayata Yamasaki, "Overflow-safe polylog-time parallel minimum-weight perfect-matching decoder: Toward feasible implementation", Physical Review A 114 2, 022409 (2026).
[299] Kabir Dubey and Kaitlin N. Smith, 2025 IEEE International Conference on Quantum Computing and Engineering (QCE) 636 (2025) ISBN:979-8-3315-5736-2.
[300] Jiahan Chen, Chenghong Zhu, Ge Bai, and Xin Wang, 2026 ACM/IEEE 53rd Annual International Symposium on Computer Architecture (ISCA) 842 (2026) ISBN:979-8-3315-5065-3.
[301] Christophe Piveteau, Christopher T. Chubb, and Joseph M. Renes, "Tensor-Network Decoding Beyond 2D", PRX Quantum 5 4, 040303 (2024).
[302] Cheng-Cheng Yu, Yu-Hao Deng, Chao-Yang Lu, Ming-Cheng Chen, and Jian-Wei Pan, "Locating Rydberg decay error in the swap leakage reduction circuit protocol", Physical Review A 113 4, 042451 (2026).
[303] Tanmay Singal, Che Chiang, Eugene Hsu, Eunsang Kim, Hsi-Sheng Goan, and Min-Hsiu Hsieh, "Counting stabiliser codes for arbitrary dimension", Quantum 7, 1048 (2023).
[304] Wang Fang and Mingsheng Ying, "Symbolic Execution for Quantum Error Correction Programs", Proceedings of the ACM on Programming Languages 8 PLDI, 1040 (2024).
[305] M. Sohaib Alam and Eleanor Rieffel, "Dynamical logical qubits in the Bacon-Shor code", Physical Review A 112 2, 022436 (2025).
[306] Kao-Yueh Kuo and Yingkai Ouyang, "Degenerate quantum erasure decoding", npj Quantum Information 12 1, 75 (2026).
[307] Thomas Grurl, Jürgen Fuß, and Robert Wille, 2023 IEEE 53rd International Symposium on Multiple-Valued Logic (ISMVL) 141 (2023) ISBN:978-1-6654-6416-1.
[308] Piotr Sierant and Xhek Turkeshi, "Universal Behavior beyond Multifractality of Wave Functions at Measurement-Induced Phase Transitions", Physical Review Letters 128 13, 130605 (2022).
[309] Diego Ruiz, Jérémie Guillaud, Christophe Vuillot, and Mazyar Mirrahimi, "Unfolded distillation: very low-cost magic state preparation for biased-noise qubits", npj Quantum Information 12 1, 53 (2026).
[310] Zi-Han Chen, Ming-Cheng Chen, Chao-Yang Lu, and Jian-Wei Pan, "Efficient Magic State Cultivation on RP2", PRX Quantum 7 1, 010315 (2026).
[311] Alessio Paviglianiti, Guglielmo Lami, Mario Collura, and Alessandro Silva, "Estimating Nonstabilizerness Dynamics Without Simulating It", PRX Quantum 6 3, 030320 (2025).
[312] Abhinav Anand and Kenneth R. Brown, "Stabilizer configuration interaction: Finding molecular subspaces with error detection properties", Physical Review A 112 3, 032421 (2025).
[313] Hsiang-Ku Lin, Pak Kau Lim, Alexey A. Kovalev, and Leonid P. Pryadko, "Abelian Multi-Cycle Codes for Single-Shot Error Correction", PRX Quantum 7 2, 020326 (2026).
[314] Sophia Fuhui Lin, Joshua Viszlai, Kaitlin N. Smith, Gokul Subramanian Ravi, Charles Yuan, Frederic T. Chong, and Benjamin J. Brown, Proceedings of the 29th ACM International Conference on Architectural Support for Programming Languages and Operating Systems, Volume 2 216 (2024) ISBN:9798400703850.
[315] Grégoire de Gliniasty, Paul Hilaire, Pierre-Emmanuel Emeriau, Stephen C. Wein, Alexia Salavrakos, and Shane Mansfield, "A Spin-Optical Quantum Computing Architecture", Quantum 8, 1423 (2024).
[316] Ran Huo and Jose Nunez-Yanez, 2025 28th Euromicro Conference on Digital System Design (DSD) 616 (2025) ISBN:979-8-3315-8499-3.
[317] Niel de Beaudrap and Steven Herbert, "Fast Stabiliser Simulation with Quadratic Form Expansions", Quantum 6, 803 (2022).
[318] Shouzhen Gu, Yotam Vaknin, Alex Retzker, and Aleksander Kubica, "Optimizing Quantum Error-Correction Protocols with Erasure Qubits", PRX Quantum 6 4, 040354 (2025).
[319] Dimiter Ostrev, Davide Orsucci, Francisco Lázaro, and Balazs Matuz, "Classical product code constructions for quantum Calderbank-Shor-Steane codes", Quantum 8, 1420 (2024).
[320] Kaavya Sahay, Junlan Jin, Jahan Claes, Jeff D. Thompson, and Shruti Puri, "High-Threshold Codes for Neutral-Atom Qubits with Biased Erasure Errors", Physical Review X 13 4, 041013 (2023).
[321] Shao-Hen Chiew, Ezequiel Ignacio Rodríguez Chiacchio, Vishal Sharma, Jing Hao Chai, and Hui Khoon Ng, "Fault-tolerant quantum circuits on connectivity-constrained hardware with swap gates", Physical Review Research 8 3, 033081 (2026).
[322] Nai-Hua 乃华 Ji 纪, Hui-Qian 汇倩 Sun 孙, Bo 博 Xiao 肖, Ping-Li 平俐 Song 宋, and Hong-Yang 鸿洋 Ma 马, "Quantum decoder design for subsystem surface code based on multi-head graph attention and edge weighting", Chinese Physics B 34 2, 020309 (2025).
[323] Shuang Liang, Jubo Xu, Giulio Bassanino, Qianzhou Wang, Yidong Zhou, Yuncheng Lu, Zhiwen Mo, Paul Kelly, Bo Yuan, Wayne Luk, and Hongxiang Fan, 2026 ACM/IEEE 53rd Annual International Symposium on Computer Architecture (ISCA) 857 (2026) ISBN:979-8-3315-5065-3.
[324] Satvik Maurya, Abtin Molavi, Aws Albarghouthi, and Swamit Tannu, Proceedings of the 21st European Conference on Computer Systems 514 (2026) ISBN:9798400722127.
[325] Xhek Turkeshi, Marco Schirò, and Piotr Sierant, "Measuring nonstabilizerness via multifractal flatness", Physical Review A 108 4, 042408 (2023).
[326] Scott Jones and Prakash Murali, Proceedings of the 31st ACM International Conference on Architectural Support for Programming Languages and Operating Systems, Volume 2 175 (2026) ISBN:9798400723599.
[327] Yun-Jie Wang, Tai-Ping Sun, Xi-Ning Zhuang, Xiao-Fan Xu, Huan-Yu Liu, Cheng Xue, Yu-Chun Wu, Zhao-Yun Chen, and Guo-Ping Guo, "Refined criteria for quantum random-access memory error suppression via an efficient large-scale simulator", Physical Review Applied 25 4, 044069 (2026).
[328] Elliot Amponsah, Justice Owusu Agyemang, Godfred Manu Addo Boakye, and Jerry John Kponyo, "Systematic Review of Artificial Intelligence Decoders for Topological Quantum Error Correction", (2026).
[329] Lucas Daguerre and Isaac H. Kim, "Code switching revisited: Low-overhead magic state preparation using color codes", Physical Review Research 7 2, 023080 (2025).
[330] Áron Márton and János K. Asbóth, "Coherent errors and readout errors in the surface code", Quantum 7, 1116 (2023).
[331] Áron Márton and János K. Asbóth, "Optimal number of stabilizer measurement rounds in an idling surface code patch", Quantum 9, 1767 (2025).
[332] David F. Locher, Josias Old, Katharina Brechtelsbauer, Jakob Holschbach, Hans Peter Büchler, Sebastian Weber, and Markus Müller, "Multiqubit Rydberg Gates for Quantum Error Correction", PRX Quantum 7 2, 020354 (2026).
[333] Thomas Grurl, Christoph Pichler, Jürgen Fuß, and Robert Wille, 2023 36th International Conference on VLSI Design and 2023 22nd International Conference on Embedded Systems (VLSID) 301 (2023) ISBN:979-8-3503-4678-7.
[334] Antonio Francesco Mello, Alessandro Santini, and Mario Collura, "Clifford-dressed variational principles for precise Loschmidt echoes", Physical Review A 111 5, 052401 (2025).
[335] Antonio Francesco Mello, Guglielmo Lami, and Mario Collura, "Retrieving nonstabilizerness with neural networks", Physical Review A 111 1, 012440 (2025).
[336] Emiliia Dyrenkova, Raymond Laflamme, and Michael Vasmer, "Scalable simulation of fermionic encoding performance on noisy quantum computers", Physical Review A 113 2, 022607 (2026).
[337] Archisman Ghosh, Avimita Chatterjee, and Swaroop Ghosh, Design Automation for Quantum Computing 155 (2026) ISBN:978-3-032-09302-8.
[338] Madhav Krishnan Vijayan, Alexandru Paler, Jason Gavriel, Casey R Myers, Peter P Rohde, and Simon J Devitt, "Compilation of algorithm-specific graph states for quantum circuits", Quantum Science and Technology 9 2, 025005 (2024).
[339] Balázs Dóra and Cătălin Paşcu Moca, "Momentum space nonstabilizerness for the transverse field quantum Ising model", Physical Review B 112 12, 125427 (2025).
[340] Markus S. Kesselring, Julio C. Magdalena de la Fuente, Felix Thomsen, Jens Eisert, Stephen D. Bartlett, and Benjamin J. Brown, "Anyon Condensation and the Color Code", PRX Quantum 5 1, 010342 (2024).
[341] ZhiXin Xia, SiYing Wang, Yue Yan, and Xiang-Bin Wang, "The adaptive decision-making strategy for surface code decoding", Quantum Science and Technology 11 1, 015062 (2026).
[342] Hugo Perrin, Sven Jandura, and Guido Pupillo, "Quantum Error Correction resilient against Atom Loss", Quantum 9, 1884 (2025).
[343] Francisco Garcia-Herrero, Javier Valls, Llanos Vergara-Picazo, and Vicente Torres, "Diversity Methods for Improving Convergence and Accuracy of Quantum Error Correction Decoders Through Hardware Emulation", Quantum 10, 2071 (2026).
[344] Thomas R. Scruby, Michael Vasmer, and Dan E. Browne, "Non-Pauli errors in the three-dimensional surface code", Physical Review Research 4 4, 043052 (2022).
[345] Gefen Baranes, Madelyn Cain, J. Pablo Bonilla Ataides, Dolev Bluvstein, Josiah Sinclair, Vladan Vuletić, Hengyun Zhou, and Mikhail D. Lukin, "Leveraging Qubit Loss Detection in Fault-Tolerant Quantum Algorithms", Physical Review X 16 1, 011002 (2026).
[346] Alan Daleth Hernandez Barreto, Zully Vargas Galarza, Jose Luis Perez Estudillo, and Karol Yenaro Morales Escobar, 2026 International Conference on Quantum Control, Computing and Learning (qCCL) 1 (2026) ISBN:979-8-3195-1865-1.
[347] Siddharth Dangwal, Suhas Vittal, Lennart Maximilian Seifert, Frederic T. Chong, and Gokul Subramanian Ravi, Proceedings of the 52nd Annual International Symposium on Computer Architecture 1417 (2025) ISBN:9798400712616.
[348] Varun Menon, J. Pablo Bonilla Ataides, Rohan Mehta, Andi Gu, Daniel Bochen Tan, and Mikhail D. Lukin, "Magic Tricycles: Efficient Magic-State Generation with Finite Block-Length Quantum LDPC Codes", Physical Review X 16 2, 021014 (2026).
[349] Jordan Hines and Timothy Proctor, "Pauli Noise Learning for Mid-Circuit Measurements", Physical Review Letters 134 2, 020602 (2025).
[350] Wang Fang and Mingsheng Ying, Proceedings of the 61st ACM/IEEE Design Automation Conference 1 (2024) ISBN:9798400706011.
[351] Daniel Bochen Tan, Murphy Yuezhen Niu, and Craig Gidney, 2024 ACM/IEEE 51st Annual International Symposium on Computer Architecture (ISCA) 325 (2024) ISBN:979-8-3503-2658-1.
[352] Craig Gidney, Michael Newman, Austin Fowler, and Michael Broughton, "A Fault-Tolerant Honeycomb Memory", Quantum 5, 605 (2021).
[353] Sascha Heußen, Don Winter, Manuel Rispler, and Markus Müller, "Dynamical subset sampling of quantum error-correcting protocols", Physical Review Research 6 1, 013177 (2024).
[354] Jasper J. Postema and Servaas J. J. M. F. Kokkelmans, "Geometrical approach to logical qubit fidelities of neutral atom Calderbank–Shor–Steane codes", Academia Quantum 2 1(2025).
[355] James Brown, Marc P Coons, Erika Lloyd, Alexandre Fleury, Krzysztof Bieniasz, Valentin Senicourt, and Arman Zaribafiyan, "Iterative qubit coupled cluster using only clifford circuits", Physica Scripta 100 10, 105401 (2025).
[356] Qunsheng Huang, David Winderl, Arianne Meijer-van de Griend, and Richie Yeung, 2024 IEEE International Conference on Quantum Computing and Engineering (QCE) 885 (2024) ISBN:979-8-3315-4137-8.
[357] Mike Blake, Noah Linden, and Anthony P. Thompson, "Fast scrambling in classically simulable quantum circuits", Physical Review A 112 2, 022406 (2025).
[358] Maria Violaris, Luciana Henaut, James Wills, Gioele Consani, Jamie Friel, and Brian Vlastakis, "Developments in superconducting erasure qubits for hardware-efficient quantum error correction", Materials for Quantum Technology 6 3, 033001 (2026).
[359] Ruotai Wang, Takashi Sato, and Hiromitsu Awano, 2024 IEEE International Conference on Quantum Computing and Engineering (QCE) 438 (2024) ISBN:979-8-3315-4137-8.
[360] Daniel Bascones, Francisco Garcia-Herrero, and Javier Valls, "Exploring the FPGA and ASIC design space of belief propagation and ordered statistics decoders for Quantum Error Correction Codes", (2025).
[361] Suhas Vittal, Poulami Das, and Moinuddin Qureshi, 56th Annual IEEE/ACM International Symposium on Microarchitecture 509 (2023) ISBN:9798400703294.
[362] Yuya Maeda, Yasunari Suzuki, Toshiki Kobayashi, Takashi Yamamoto, Yuuki Tokunaga, and Keisuke Fujii, "Logical entanglement distribution between distant two-dimensional array qubits", Physical Review Research 8 1, 013282 (2026).
[363] Azar C. Nakhl, Ben Harper, Maxwell West, Neil Dowling, Martin Sevior, Thomas Quella, and Muhammad Usman, "Stabilizer Tensor Networks with Magic State Injection", Physical Review Letters 134 19, 190602 (2025).
[364] Siddharth Dangwal, Tina Oberoi, Ajay Sailopal, Dhirpal Shah, and Frederic T. Chong, 2026 ACM/IEEE 53rd Annual International Symposium on Computer Architecture (ISCA) 2318 (2026) ISBN:979-8-3315-5065-3.
[365] Pedro Sales Rodriguez, John M. Robinson, Paul Niklas Jepsen, Zhiyang He, Casey Duckering, Chen Zhao, Kai-Hsin Wu, Joseph Campo, Kevin Bagnall, Minho Kwon, Thomas Karolyshyn, Phillip Weinberg, Madelyn Cain, Simon J. Evered, Alexandra A. Geim, Marcin Kalinowski, Sophie H. Li, Tom Manovitz, Jesse Amato-Grill, James I. Basham, Liane Bernstein, Boris Braverman, Alexei Bylinskii, Adam Choukri, Robert J. DeAngelo, Fang Fang, Connor Fieweger, Paige Frederick, David Haines, Majd Hamdan, Julian Hammett, Ning Hsu, Ming-Guang Hu, Florian Huber, Ningyuan Jia, Dhruv Kedar, Milan Kornjača, Fangli Liu, John Long, Jonathan Lopatin, Pedro L. S. Lopes, Xiu-Zhe Luo, Tommaso Macrì, Ognjen Marković, Luis A. Martínez-Martínez, Xianmei Meng, Stefan Ostermann, Evgeny Ostroumov, David Paquette, Zexuan Qiang, Vadim Shofman, Anshuman Singh, Manuj Singh, Nandan Sinha, Henry Thoreen, Noel Wan, Yiping Wang, Daniel Waxman-Lenz, Tak Wong, Jonathan Wurtz, Andrii Zhdanov, Laurent Zheng, Markus Greiner, Alexander Keesling, Nathan Gemelke, Vladan Vuletić, Takuya Kitagawa, Sheng-Tao Wang, Dolev Bluvstein, Mikhail D. Lukin, Alexander Lukin, Hengyun Zhou, and Sergio H. Cantú, "Experimental demonstration of logical magic state distillation", Nature 645 8081, 620 (2025).
[366] Nathan Shammah, Anurag Saha Roy, Carmen G. Almudever, Sébastien Bourdeauducq, Anastasiia Butko, Gustavo Cancelo, Susan M. Clark, Johannes Heinsoo, Loïc Henriet, Gang Huang, Christophe Jurczak, Janne Kotilahti, Alessandro Landra, Ryan LaRose, Andrea Mari, Kasra Nowrouzi, Caspar Ockeloen-Korppi, Guen Prawiroatmodjo, Irfan Siddiqi, and William J. Zeng, "Open hardware solutions in quantum technology", APL Quantum 1 1, 011501 (2024).
[367] Jinkang Guo, Yifan Hong, Adam Kaufman, and Andrew Lucas, "Toward Self-Correcting Quantum Codes for Neutral Atom Arrays", PRX Quantum 7 1, 010301 (2026).
[368] Yariv Yanay, Brian Swingle, and Charles Tahan, "Detecting Measurement-Induced Entanglement Transitions with Unitary Mirror Circuits", Physical Review Letters 133 7, 070601 (2024).
[369] Fumiyoshi Kobayashi and Shota Nagayama, "Erasure-Tolerance Scheme for the Surface Codes on Neutral Atom Quantum Computers", IEEE Transactions on Quantum Engineering 7, 1 (2026).
[370] Volodymyr Sivak, Alexis Morvan, Michael Broughton, Rodrigo G. Cortiñas, Johannes Bausch, Andrew W. Senior, Matthew Neeley, Alec Eickbusch, Noah Shutty, Laleh Aghababaie Beni, James S. Spencer, Francisco J. Heras, Thomas Edlich, Dmitry Abanin, Amira Abbas, Rajeev Acharya, Georg Aigeldinger, Ross Alcaraz, Sayra Alcaraz, Trond I. Andersen, Markus Ansmann, Frank Arute, Kunal Arya, Walt Askew, Nikita Astrakhantsev, Juan Atalaya, Brian Ballard, Joseph C. Bardin, Hector Bates, Andreas Bengtsson, Majid Bigdeli Karimi, Alexander Bilmes, Simon Bilodeau, Felix Borjans, Alexandre Bourassa, Jenna Bovaird, Dylan Bowers, Leon Brill, Peter Brooks, David A. Browne, Brett Buchea, Bob B. Buckley, Tim Burger, Brian Burkett, Nicholas Bushnell, Jamal Busnaina, Anthony Cabrera, Juan Campero, Hung-Shen Chang, Silas Chen, Ben Chiaro, Liang-Ying Chih, Agnetta Y. Cleland, Bryan Cochrane, Matt Cockrell, Josh Cogan, Roberto Collins, Paul Conner, Harold Cook, William Courtney, Alexander L. Crook, Ben Curtin, Martin Damyanov, Sayan Das, Dripto M. Debroy, Sean Demura, Paul Donohoe, Ilya Drozdov, Andrew Dunsworth, Valerie Ehimhen, Aviv Moshe Elbag, Lior Ella, Mahmoud Elzouka, David Enriquez, Catherine Erickson, Vinicius S. Ferreira, Marcos Flores, Leslie Flores Burgos, Ebrahim Forati, Jeremiah Ford, Austin G. Fowler, Brooks Foxen, Masaya Fukami, Alan Wing Lun Fung, Lenny Fuste, Suhas Ganjam, Gonzalo Garcia, Christopher Garrick, Robert Gasca, Helge Gehring, Robert Geiger, Élie Genois, William Giang, Dar Gilboa, James E. Goeders, Edward C. Gonzales, Raja Gosula, Stijn J. de Graaf, Alejandro Grajales Dau, Dietrich Graumann, Joel Grebel, Alex Greene, Jonathan A. Gross, Jose Guerrero, Loïck Le Guevel, Tan Ha, Steve Habegger, Tanner Hadick, Ali Hadjikhani, Michael C. Hamilton, Matthew P. Harrigan, Sean D. Harrington, Jeanne Hartshorn, Stephen Heslin, Paula Heu, Oscar Higgott, Reno Hiltermann, Hsin-Yuan Huang, Mike Hucka, Christopher Hudspeth, Ashley Huff, William J. Huggins, Evan Jeffrey, Shaun Jevons, Zhang Jiang, Xiaoxuan Jin, Chaitali Joshi, Pavol Juhas, Andreas Kabel, Dvir Kafri, Hui Kang, Kiseo Kang, Amir H. Karamlou, Ryan Kaufman, Kostyantyn Kechedzhi, Tanuj Khattar, Mostafa Khezri, Seon Kim, Can M. Knaut, Bryce Kobrin, Fedor Kostritsa, John Mark Kreikebaum, Ryuho Kudo, Ben Kueffler, Arun Kumar, Vladislav D. Kurilovich, Vitali Kutsko, Nathan Lacroix, David Landhuis, Tiano Lange-Dei, Brandon W. Langley, Pavel Laptev, Kim-Ming Lau, Justin Ledford, Joy Lee, Kenny Lee, Brian J. Lester, Wendy Leung, Lily Li, Wing Yan Li, Ming Li, Alexander T. Lill, William P. Livingston, Matthew T. Lloyd, Aditya Locharla, Laura De Lorenzo, Daniel Lundahl, Aaron Lunt, Sid Madhuk, Aniket Maiti, Ashley Maloney, Salvatore Mandrá, Leigh S. Martin, Orion Martin, Eric Mascot, Paul Masih Das, Dmitri Maslov, Melvin Mathews, Cameron Maxfield, Jarrod R. McClean, Matt McEwen, Seneca Meeks, Kevin C. Miao, Zlatko K. Minev, Reza Molavi, Sebastian Molina, Shirin Montazeri, Charles Neill, Michael Newman, Anthony Nguyen, Murray Nguyen, Chia-Hung Ni, Murphy Yuezhen Niu, Logan Oas, Raymond Orosco, Kristoffer Ottosson, Alice Pagano, Agustin Di Paolo, Sherman Peek, David Peterson, Alex Pizzuto, Elias Portoles, Rebecca Potter, Orion Pritchard, Michael Qian, Chris Quintana, Arpit Ranadive, Matthew J. Reagor, Rachel Resnick, David M. Rhodes, Daniel Riley, Gabrielle Roberts, Roberto Rodriguez, Emma Ropes, Lucia B. De Rose, Eliott Rosenberg, Emma Rosenfeld, Dario Rosenstock, Elizabeth Rossi, Pedram Roushan, David A. Rower, Robert Salazar, Kannan Sankaragomathi, Murat Can Sarihan, Kevin J. Satzinger, Max Schaefer, Sebastian Schroeder, Henry F. Schurkus, Aria Shahingohar, Michael J. Shearn, Aaron Shorter, Vladimir Shvarts, Spencer Small, W. Clarke Smith, David A. Sobel, Barrett Spells, Sofia Springer, George Sterling, Jordan Suchard, Aaron Szasz, Alexander Sztein, Madeline Taylor, Jothi Priyanka Thiruraman, Douglas Thor, Dogan Timucin, Eifu Tomita, Alfredo Torres, M. Mert Torunbalci, Hao Tran, Abeer Vaishnav, Justin Vargas, Sergey Vdovichev, Guifre Vidal, Catherine Vollgraff Heidweiller, Meghan Voorhees, Steven Waltman, Jonathan Waltz, Shannon X. Wang, Brayden Ware, James D. Watson, Yonghua Wei, Travis Weidel, Theodore White, Kristi Wong, Bryan W. K. Woo, Christopher J. Wood, Maddy Woodson, Cheng Xing, Z. Jamie Yao, Ping Yeh, Bicheng Ying, Juhwan Yoo, Noureldin Yosri, Elliot Young, Grayson Young, Adam Zalcman, Ran Zhang, Yaxing Zhang, Ningfeng Zhu, Nicholas Zobrist, Zhenjie Zou, Ryan Babbush, Dave Bacon, Sergio Boixo, Yu Chen, Zijun Chen, Michel Devoret, Monica Hansen, Jeremy Hilton, Cody Jones, Julian Kelly, Alexander N. Korotkov, Erik Lucero, Anthony Megrant, Hartmut Neven, William D. Oliver, Ganesh Ramachandran, Vadim Smelyanskiy, and Paul V. Klimov, "Reinforcement learning control of quantum error correction", Nature 655 8124, 879 (2026).
[371] Joshua Viszlai, Satvik Maurya, Swamit Tannu, Margaret Martonosi, and Frederic T. Chong, Proceedings of the 31st ACM International Conference on Architectural Support for Programming Languages and Operating Systems, Volume 2 1476 (2026) ISBN:9798400723599.
[372] Zuolin Wei, Tan He, Yangsen Ye, Dachao Wu, Yiming Zhang, Youwei Zhao, Weiping Lin, He-Liang Huang, Xiaobo Zhu, and Jian-Wei Pan, "Low-overhead defect-adaptive surface code with bandage-like super-stabilizers", npj Quantum Information 11 1, 75 (2025).
[373] Kenton M. Barnes, Tomasz Bialas, Okan Buğdayci, Earl T. Campbell, Neil I. Gillespie, Kauser Johar, Ram Rajan, Adam W. Richardson, Luka Skoric, Canberk Topal, Mark L. Turner, and Abbas B. Ziad, 2023 IEEE International Conference on Quantum Computing and Engineering (QCE) 375 (2023) ISBN:979-8-3503-4323-6.
[374] Amit Jamadagni Gangapuram, Andreas Läuchli, and Cornelius Hempel, "Benchmarking quantum computer simulation software packages: State vector simulators", SciPost Physics Core 7 4, 075 (2024).
[375] F. Setiawan and Campbell McLauchlan, "Tailoring dynamical codes for biased noise: the X3Z3 Floquet code", npj Quantum Information 11 1, 149 (2025).
[376] Fangxuan Liu, Gaoxiang Tang, Luming Duan, and Yukai Wu, "Performance analysis for crosstalk errors between parallel entangling gates in trapped-ion quantum error correction", Physical Review Applied 24 1, 014032 (2025).
[377] Edwin Tham and Nicolas Delfosse, "Optimized Clifford Noise Reduction: Theory, Simulations and Experiments", Quantum 9, 1829 (2025).
[378] Balint Pato, Theerapat Tansuwannont, and Kenneth R. Brown, "Concatenated Steane code with single-flag syndrome checks", Physical Review A 110 3, 032411 (2024).
[379] Yilun Zhao, Kangding Zhao, Peng Zhou, Dingdong Liu, Tingyu Luo, Yuzhen Zheng, Peng Luo, Shun Hu, Jin Lin, Cheng Guo, Yinhe Han, Ying Wang, Mingtang Deng, Junjie Wu, and X. Fu, Proceedings of the 58th IEEE/ACM International Symposium on Microarchitecture 564 (2025) ISBN:9798400715730.
[380] Nitish Mehta, James D. Teoh, Taewan Noh, Ankur Agrawal, Amos Anderson, Beau Birdsall, Avadh Brahmbhatt, Winfred Byrd, Anthony Cabrera, Marc Cacioppo, Leo Carroll, Jonathan Chen, Tzu-Chiao Chien, Richard A. Chamberlin, Jacob C. Curtis, Doreen Danso, Sanjana Renganatha Desigan, Francesco D’Acounto, Bassel Heiba Elfeky, S. M. Farzaneh, Chase Foley, Benjamin Gudlewski, Hannah Hastings, Robert Johnson, Nishaad Khedkar, Trevor Keen, Anup Kumar, Cihan Kurter, Kamila Krawczuk, Eric Langstengel, Richard D. Li, Gangqiang Liu, Hanyi Lu, Pinlei Lu, Luke Mastalli-Kelly, Adam Maines, Michael Maxwell, Heather McCarrick, Mona Mirzaei, Anirudh Narla, Omar Rashad, Erik Reikes, Mizanur Rahman, Rurik Primiani, Michael Schwaller, Ali Sabbah, Tali Shemma, Ruby A. Shi, Sitakanta Satapathy, Dean Stolpe, Jonathan Strenczewilk, Doug Szperka, Iu-Wei Sze, David Sweeney, Preetham Tikkireddi, Chin-Lun Tsung, Daren Vet Sam, Daniel K. Weiss, Zhibo Yang, Liuqi Yu, Teng Zhang, Olivier Boireau, Stephen Horton, Sean Weinberg, José Aumentado, Bryan Cord, Chan U. Lei, Joseph O. Yuan, Shantanu O. Mundhada, Kevin S. Chou, S. Harvey Moseley, and Robert J. Schoelkopf, "An entangling gate for dual-rail erasure qubits", Nature 656 8126, 47 (2026).
[381] Daniel Tandeitnik and Thiago Guerreiro, "Evolving quantum circuits", Quantum Information Processing 23 3, 109 (2024).
[382] Tom Peham, Erik Weilandt, and Robert Wille, "Optimizing fault-tolerant cat state preparation", Physical Review A 113 6, 062426 (2026).
[383] Leopoldo Sarra, Kevin Ellis, and Florian Marquardt, "Discovering quantum circuit components with program synthesis", Machine Learning: Science and Technology 5 2, 025029 (2024).
[384] Ian Hesner, Bence Hetényi, and James R. Wootton, "Using detector likelihood for benchmarking quantum error correction", Physical Review A 111 5, 052452 (2025).
[385] Soronzonbold Otgonbaatar and Dieter Kranzlmüller, "Exploiting the Quantum Advantage for Satellite Image Processing: Review and Assessment", IEEE Transactions on Quantum Engineering 5, 1 (2024).
[386] Friederike Butt, Lars Esser, and Markus Müller, "Decoding three-dimensional color codes with boundaries", Physical Review A 113 4, 042416 (2026).
[387] Yutaro Akahoshi, Riki Toshio, Jun Fujisaki, Hirotaka Oshima, Shintaro Sato, and Keisuke Fujii, "Runtime reduction in lattice surgery utilizing timelike soft information", Physical Review Research 8 3, 033085 (2026).
[388] Jianxin Chen, Dawei Ding, Cupjin Huang, and Linghang Kong, "Linear cross-entropy benchmarking with Clifford circuits", Physical Review A 108 5, 052613 (2023).
[389] Yu Shi, Ashlesha Patil, and Saikat Guha, "Measurement-Based Entanglement Distillation and Constant-Rate Quantum Repeaters over Arbitrary Distances", Physical Review Letters 135 13, 130803 (2025).
[390] Jason Gavriel, Daniel Herr, Alexis Shaw, Michael J. Bremner, Alexandru Paler, and Simon J. Devitt, "Transversal injection for direct encoding of ancilla states for non-Clifford gates using stabilizer codes", Physical Review Research 5 3, 033019 (2023).
[391] Yifan F. Zhang and Sarang Gopalakrishnan, "Conditional Mutual Information and Information-Theoretic Phases of Decohered Gibbs States", Physical Review Letters 135 16, 160401 (2025).
[392] Jia‐Ning Li, Tian‐Hao Wei, Zi‐Hao Mei, Qi Zhou, Wei‐Cheng Kong, Jiaxuan Zhang, Yu‐Chun Wu, and Guo‐Ping Guo, "Real‐Time Decoding For Surface Code", Advanced Quantum Technologies 9 5, e00806 (2026).
[393] Oscar Higgott and Craig Gidney, "Sparse Blossom: correcting a million errors per core second with minimum-weight matching", Quantum 9, 1600 (2025).
[394] Ryota Nakai and Hayato Goto, "Subsystem many-hypercube codes: High-rate concatenated codes with low-weight syndrome measurements", Physical Review Applied 25 1, 014032 (2026).
[395] Refaat Ismail, I-Chi Chen, Chen Zhao, Ronen Weiss, Fangli Liu, Hengyun Zhou, Sheng-Tao Wang, Andrew Sornborger, and Milan Kornjača, "Transversal Architecture for Megaquop-Scale Quantum Simulation with Neutral Atoms", PRX Quantum 7 2, 020343 (2026).
[396] Josu Etxezarreta Martinez, Paul Schnabl, Javier Oliva del Moral, Reza Dastbasteh, Pedro M. Crespo, and Ruben M. Otxoa, "Leveraging biased noise for more efficient quantum error correction at the circuit level with two-level qubits", Physical Review Applied 25 1, 014021 (2026).
[397] Luka Skoric, Dan E. Browne, Kenton M. Barnes, Neil I. Gillespie, and Earl T. Campbell, "Parallel window decoding enables scalable fault tolerant quantum computation", Nature Communications 14 1, 7040 (2023).
[398] Anita Weidinger, Glen Bigan Mbeng, Michael Fellner, Davit Khachatryan, and Wolfgang Lechner, "Performance of parity QAOA for the signed Max-Cut problem", New Journal of Physics 28 3, 034514 (2026).
[399] Jahan Claes, "Dynamic circuit for the honeycomb Floquet code", Physical Review A 112 6, 062406 (2025).
[400] Marco Maronese, Francesco Ferrari, Matteo Vandelli, and Daniele Dragoni, "High-expressibility quantum neural networks using only classical resources", Quantum Machine Intelligence 8 1, 25 (2026).
[401] Evan Sutcliffe and Alejandra Beghelli, "Fidelity-Aware Multipath Routing for Multipartite State Distribution in Quantum Networks", IEEE Transactions on Quantum Engineering 6, 1 (2025).
[402] Oscar Higgott, Thomas C. Bohdanowicz, Aleksander Kubica, Steven T. Flammia, and Earl T. Campbell, "Improved Decoding of Circuit Noise and Fragile Boundaries of Tailored Surface Codes", Physical Review X 13 3, 031007 (2023).
[403] Jeet Shah, Christopher Fechisin, Yu-Xin Wang, Joseph T. Iosue, James D. Watson, Yan-Qi Wang, Brayden Ware, Alexey V. Gorshkov, and Cheng-Ju Lin, "Instability of steady-state mixed-state symmetry-protected topological order to strong-to-weak spontaneous symmetry breaking", Quantum 9, 1912 (2025).
[404] Piotr Sierant, Paolo Stornati, and Xhek Turkeshi, "Fermionic Magic Resources of Quantum Many-Body Systems", PRX Quantum 7 1, 010302 (2026).
[405] Jan Olle, Remmy Zen, Matteo Puviani, and Florian Marquardt, "Simultaneous discovery of quantum error correction codes and encoders with a noise-aware reinforcement learning agent", npj Quantum Information 10 1, 126 (2024).
[406] Chenning Tao, Yujie Ji, Liqiang Lu, Size Zheng, and Jianwei Yin, Lecture Notes in Computer Science 16062, 113 (2026) ISBN:978-981-95-1020-7.
[407] Arian Vezvaee, Cesar Benito, Mario Morford-Oberst, Alejandro Bermudez, and Daniel A. Lidar, "Surface code scaling on heavy-hex superconducting quantum processors", Nature Communications 17 1, 9201 (2026).
[408] Nithin Raveendran, David Declercq, and Bane Vasić, ICC 2026 - IEEE International Conference on Communications 1 (2026) ISBN:979-8-3195-4209-0.
[409] Manuel H. Muñoz-Arias, Stefanos Kourtis, and Alexandre Blais, "Low-depth Clifford circuits approximately solve MaxCut", Physical Review Research 6 2, 023294 (2024).
[410] Craig Gidney, Noah Shutty, and Cody Jones, "Magic state cultivation: growing T states as cheap as CNOT gates", arXiv:2409.17595, (2024).
[411] Alexander M. Dalzell, Sam McArdle, Mario Berta, Przemyslaw Bienias, Chi-Fang Chen, András Gilyén, Connor T. Hann, Michael J. Kastoryano, Emil T. Khabiboulline, Aleksander Kubica, Grant Salton, Samson Wang, and Fernando G. S. L. Brandão, "Quantum algorithms: A survey of applications and end-to-end complexities", arXiv:2310.03011, (2023).
[412] Antonio deMarti iOlius, Imanol Etxezarreta Martinez, Joschka Roffe, and Josu Etxezarreta Martinez, "An almost-linear time decoding algorithm for quantum LDPC codes under circuit-level noise", arXiv:2409.01440, (2024).
[413] Daniel Bochen Tan, Murphy Yuezhen Niu, and Craig Gidney, "A SAT Scalpel for Lattice Surgery: Representation and Synthesis of Subroutines for Surface-Code Fault-Tolerant Quantum Computing", arXiv:2404.18369, (2024).
[414] Thomas R. Scruby, Timo Hillmann, and Joschka Roffe, "High-threshold, low-overhead and single-shot decodable fault-tolerant quantum memory", arXiv:2406.14445, (2024).
[415] Alexandre Guernut and Christophe Vuillot, "Fault-Tolerant Constant-Depth Clifford Gates on Toric Codes", arXiv:2411.18287, (2024).
[416] Satvik Maurya, Abtin Molavi, Aws Albarghouthi, and Swamit Tannu, "Managing Classical Processing Requirements for Quantum Error Correction", arXiv:2406.17995, (2024).
[417] Antonio deMarti iOlius and Josu Etxezarreta Martinez, "The closed-branch decoder for quantum LDPC codes", arXiv:2402.01532, (2024).
[418] Craig Gidney and Dave Bacon, "Less Bacon More Threshold", arXiv:2305.12046, (2023).
[419] Kieran Young, Marcus Scese, and Ali Ebnenasir, "Simulating Quantum Computations on Classical Machines: A Survey", arXiv:2311.16505, (2023).
[420] Alex Townsend-Teague, Julio Magdalena de la Fuente, and Markus Kesselring, "Floquetifying the Colour Code", arXiv:2307.11136, (2023).
[421] Allyson Silva, Xiangyi Zhang, Zak Webb, Mia Kramer, Chan Woo Yang, Xiao Liu, Jessica Lemieux, Ka-Wai Chen, Artur Scherer, and Pooya Ronagh, "Multi-qubit Lattice Surgery Scheduling", arXiv:2405.17688, (2024).
[422] Srikar Chundury, Jiajia Li, In-Saeng Suh, and Frank Mueller, "DiaQ: Efficient State-Vector Quantum Simulation", arXiv:2405.01250, (2024).
[423] Yaniv Kurman, Lior Ella, Nir Halay, Oded Wertheim, and Yonatan Cohen, "Controller-decoder system requirements derived by implementing Shor's algorithm with surface code", arXiv:2412.00289, (2024).
[424] Younghun Kim, Martin Sevior, and Muhammad Usman, "Magic State Injection on IBM Quantum Processors Above the Distillation Threshold", arXiv:2412.01446, (2024).
[425] Qunsheng Huang, David Winderl, Arianne Meijer-van de Griend, and Richie Yeung, "Redefining Lexicographical Ordering: Optimizing Pauli String Decompositions for Quantum Compiling", arXiv:2408.00354, (2024).
[426] Misty A. Wahl, Andrea Mari, Nathan Shammah, William J. Zeng, and Gokul Subramanian Ravi, "Zero noise extrapolation on logical qubits by scaling the error correction code distance", arXiv:2304.14985, (2023).
[427] Daniel Hothem, Ashe Miller, and Timothy Proctor, "What is my quantum computer good for? Quantum capability learning with physics-aware neural networks", arXiv:2406.05636, (2024).
[428] Maurice D. Hanisch, Bence Hetényi, and James R. Wootton, "Soft information decoding with superconducting qubits", arXiv:2411.16228, (2024).
[429] Yosuke Ueno, Taku Saito, Teruo Tanimoto, Yasunari Suzuki, Yutaka Tabuchi, Shuhei Tamate, and Hiroshi Nakamura, "High-Performance and Scalable Fault-Tolerant Quantum Computation with Lattice Surgery on a 2.5D Architecture", arXiv:2411.17519, (2024).
[430] Nadish de Silva, Wilfred Salmon, and Ming Yin, "Fast algorithms for classical specifications of stabiliser states and Clifford gates", arXiv:2311.10357, (2023).
[431] Jintae Kim, Jung Hoon Han, and Isaac H. Kim, "Fault-tolerant Quantum Error Correction Using a Linear Array of Emitters", arXiv:2403.01376, (2024).
[432] Jason D. Chadwick, Christopher Kang, Joshua Viszlai, Sophia Fuhui Lin, and Frederic T. Chong, "Averting multi-qubit burst errors in surface code magic state factories", arXiv:2405.00146, (2024).
[433] David Winderl, Qunsheng Huang, Arianne Meijer-van de Griend, and Richie Yeung, "Architecture-Aware Synthesis of Stabilizer Circuits from Clifford Tableaus", arXiv:2309.08972, (2023).
[434] Wang Fang and Mingsheng Ying, "Symbolic Execution for Quantum Error Correction Programs", arXiv:2311.11313, (2023).
[435] Suhas Vittal, Poulami Das, and Moinuddin Qureshi, "ERASER: Towards Adaptive Leakage Suppression for Fault-Tolerant Quantum Computing", arXiv:2309.13143, (2023).
[436] Brendan Reid, "A simple method for compiling quantum stabilizer circuits", arXiv:2404.19408, (2024).
[437] Wang Fang and Mingsheng Ying, "SymPhase: Phase Symbolization for Fast Simulation of Stabilizer Circuits", arXiv:2311.03906, (2023).
[438] Dimitrios Thanos, Tim Coopmans, and Alfons Laarman, "Fast equivalence checking of quantum circuits of Clifford gates", arXiv:2308.01206, (2023).
[439] Theodore J. Yoder, Eddie Schoute, Patrick Rall, Emily Pritchett, Jay M. Gambetta, Andrew W. Cross, Malcolm Carroll, and Michael E. Beverland, "Tour de gross: A modular quantum computer based on bivariate bicycle codes", arXiv:2506.03094, (2025).
[440] Gopal Chandra Santra, Alex Windey, Soumik Bandyopadhyay, Andrea Legramandi, and Philipp Hauke, "Complexity transitions in chaotic quantum systems: Nonstabilizerness, entanglement, and fractal dimension in SYK and random matrix models", arXiv:2505.09707, (2025).
[441] Tristan Müller, Thomas Alexander, Michael E. Beverland, Markus Bühler, Blake R. Johnson, Thilo Maurer, and Drew Vandeth, "Improved belief propagation is sufficient for real-time decoding of quantum memory", arXiv:2506.01779, (2025).
[442] Zeyuan Zhou, Andrew Ji, and Yongshan Ding, "Surface Code Error Correction with Crosstalk Noise", arXiv:2503.04642, (2025).
[443] Alexander Cowtan, Zhiyang He, Dominic J. Williamson, and Theodore J. Yoder, "Fast and fault-tolerant logical measurements: Auxiliary hypergraphs and transversal surgery", arXiv:2510.14895, (2025).
[444] Evan Sutcliffe, Bhargavi Jonnadula, Claire Le Gall, Alexandra E. Moylett, and Coral M. Westoby, "Distributed quantum error correction based on hyperbolic Floquet codes", arXiv:2501.14029, (2025).
[445] Thilo Maurer, Markus Bühler, Michael Kröner, Frank Haverkamp, Tristan Müller, Drew Vandeth, and Blake R. Johnson, "Real-time decoding of the gross code memory with FPGAs", arXiv:2510.21600, (2025).
[446] Shuwen Kan, Zefan Du, Chenxu Liu, Meng Wang, Yufei Ding, Ang Li, Ying Mao, and Samuel Stein, "SPARO: Surface-code Pauli-based Architectural Resource Optimization for Fault-tolerant Quantum Computing", arXiv:2504.21854, (2025).
[447] Christine Li, John Preskill, and Qian Xu, "Transversal dimension jump for product qLDPC codes", arXiv:2510.07269, (2025).
[448] Jahan Claes, "Cultivating T states on the surface code with only two-qubit gates", arXiv:2509.05232, (2025).
[449] Benjamin Rodatz, Boldizsár Poór, and Aleks Kissinger, "Fault Tolerance by Construction", arXiv:2506.17181, (2025).
[450] Siddharth Dangwal, Suhas Vittal, Lennart Maximillian Seifert, Frederic T. Chong, and Gokul Subramanian Ravi, "Variational Quantum Algorithms in the era of Early Fault Tolerance", arXiv:2503.20963, (2025).
[451] Ashe Miller, Corey Ostrove, Jordan Hines, Robin Blume-Kohout, Kevin Young, and Timothy Proctor, "Efficient simulation of Clifford circuits with small Markovian errors", arXiv:2504.15128, (2025).
[452] Diego Ruiz, Jérémie Guillaud, Christophe Vuillot, and Mazyar Mirrahimi, "Unfolded distillation: very low-cost magic state preparation for biased-noise qubits", arXiv:2507.12511, (2025).
[453] Gengyuan Hu, Wanli Ouyang, Chao-Yang Lu, Chen Lin, and Han-Sen Zhong, "Efficient and Universal Neural-Network Decoder for Stabilizer-Based Quantum Error Correction", arXiv:2502.19971, (2025).
[454] Meng Wang, Chenxu Liu, Sean Garner, Samuel Stein, Yufei Ding, Prashant J. Nair, and Ang Li, "Tableau-Based Framework for Efficient Logical Quantum Compilation", arXiv:2509.02721, (2025).
[455] Craig Gidney and Thiago Bergamaschi, "A Constant Rate Quantum Computer on a Line", arXiv:2502.16132, (2025).
[456] Andrey Boris Khesin, "Quantum Computing from Graphs", arXiv:2501.17959, (2025).
[457] Ryan V. Mishmash, Vadym Kliuchnikov, Juan Bello-Rivas, Adam Paetznick, David Aasen, Christina Knapp, Yue Wu, Bela Bauer, Marcus P. da Silva, and Parsa Bonderson, "Excising dead components in the surface code using minimally invasive alterations: A performance study", arXiv:2508.04786, (2025).
[458] Rebecca Katharina Radebold, Stephen D. Bartlett, and Andrew C. Doherty, "Explicit Instances of Quantum Tanner Codes", arXiv:2508.05095, (2025).
[459] Jixuan Ruan, Hezi Zhang, Xiang Fang, Ang Li, Wesley C. Campbell, Eric Hudson, David Hayes, Hartmut Haeffner, Travis Humble, Jens Palsberg, and Yufei Ding, "TrapSIMD: SIMD-Aware Compiler Optimization for 2D Trapped-Ion Quantum Machines", arXiv:2504.17886, (2025).
[460] Shintaro Sato and Yasunari Suzuki, "Scheduling of syndrome measurements with a few ancillary qubits", arXiv:2508.07913, (2025).
[461] Kwok Ho Wan, "Simple magic state calculations using `Improved Simulation of Stabilizer Circuits'", arXiv:2502.16939, (2025).
[462] Archisman Ghosh, Avimita Chatterjee, and Swaroop Ghosh, "Design Automation in Quantum Error Correction", arXiv:2507.12253, (2025).
[463] Satvik Maurya and Swamit Tannu, "Synchronization for Fault-Tolerant Quantum Computers", arXiv:2506.10258, (2025).
[464] Siddharth Dangwal, Tina Oberoi, Ajay Sailopal, Dhirpal Shah, and Frederic T. Chong, "Noisy Quantum Simulation Using Tracking, Uncomputation and Sampling", arXiv:2508.04880, (2025).
[465] Shouzhen Gu and Mehdi Soleimanifar, "Power and Limitations of Linear Programming Decoder for Quantum LDPC Codes", arXiv:2508.04769, (2025).
[466] Wenxuan Fan, Yasunari Suzuki, Gokul Subramanian Ravi, Yosuke Ueno, Ilkwon Byun, Koji Inoue, and Teruo Tanimoto, "Accelerating BP-based decoders for QLDPC Codes with Local Syndrome-Based Preprocessing", arXiv:2509.01892, (2025).
[467] Satoshi Yoshida, Craig Gidney, Matt McEwen, and Adam Zalcman, "Low Depth Color Code Circuits with CXSWAP gate", arXiv:2510.00370, (2025).
[468] Evan Peters, "Importance sampling for data-driven decoding of quantum error-correcting codes", arXiv:2505.22741, (2025).
[469] Sean Garner, Chenxu Liu, Meng Wang, Samuel Stein, and Ang Li, "STABSim: A Parallelized Clifford Simulator with Features Beyond Direct Simulation", arXiv:2507.03092, (2025).
[470] Yiqing Zhou, Chao Wan, Yichen Xu, Jin Peng Zhou, Kilian Q. Weinberger, and Eun-Ah Kim, "Learning to decode logical circuits", arXiv:2504.16999, (2025).
[471] Marco Maronese, Francesco Ferrari, Matteo Vandelli, and Daniele Dragoni, "High-expressibility Quantum Neural Networks using only classical resources", arXiv:2506.13605, (2025).
[472] Dominic J. Williamson and Bence Hetényi, "Dynamical quantum codes and logic gates on a lattice with sparse connectivity", arXiv:2510.05225, (2025).
[473] Maximilian Rüsch, Aleks Kissinger, and Benjamin Rodatz, "Completeness for Fault Equivalence of Clifford ZX Diagrams", arXiv:2510.08477, (2025).
[474] Taylor L. Patti, Thien Nguyen, Justin G. Lietz, Alexander J. McCaskey, and Brucek Khailany, "Augmenting Simulated Noisy Quantum Data Collection by Orders of Magnitude Using Pre-Trajectory Sampling with Batched Execution", arXiv:2504.16297, (2025).
[475] Qifan Huang, Li Zhou, Wang Fang, Mengyu Zhao, and Mingsheng Ying, "Efficient Formal Verification of Quantum Error Correcting Programs", arXiv:2504.07732, (2025).
[476] Yilun Zhao, Kangding Zhao, Peng Zhou, Dingdong Liu, Tingyu Luo, Yuzhen Zheng, Peng Luo, Shun Hu, Jin Lin, Cheng Guo, Yinhe Han, Ying Wang, Mingtang Deng, Junjie Wu, and X. Fu, "Distributed-HISQ: A Distributed Quantum Control Architecture", arXiv:2509.04798, (2025).
[477] Vu Tuan Hai, Bui Cao Doanh, Le Vu Trung Duong, Pham Hoai Luan, and Yasuhiko Nakashima, "Qimax: Efficient quantum simulation via GPU-accelerated extended stabilizer formalism", arXiv:2505.03307, (2025).
[478] Benjamin Anker and Milad Marvian, "Compressing Syndrome Measurement Sequences", arXiv:2509.07288, (2025).
[479] Nils Quetschlich and Olivia Di Matteo, "An experience-based classification of quantum bugs in quantum software", arXiv:2509.03280, (2025).
[480] Chaithanya Naik Mude, Linipun Phuttitarn, Satvik Maurya, Kunal Sinha, Mark Saffman, and Swamit Tannu, "Enabling Fast and Accurate Neutral Atom Readout through Image Denoising", arXiv:2510.25982, (2025).
[481] Shane A. Caldwell, Moein Khazraee, Elena Agostini, Tom Lassiter, Corey Simpson, Omri Kahalon, Mrudula Kanuri, Jin-Sung Kim, Sam Stanwyck, Muyuan Li, Jan Olle, Christopher Chamberland, Ben Howe, Bruno Schmitt, Justin G. Lietz, Alex McCaskey, Jun Ye, Ang Li, Alicia B. Magann, Corey I. Ostrove, Kenneth Rudinger, Robin Blume-Kohout, Kevin Young, Nathan E. Miller, Yilun Xu, Gang Huang, Irfan Siddiqi, John Lange, Christopher Zimmer, and Travis Humble, "Platform Architecture for Tight Coupling of High-Performance Computing with Quantum Processors", arXiv:2510.25213, (2025).
[482] Younghun Kim, Spiro Gicev, Martin Sevior, and Muhammad Usman, "Time-Dynamic Circuits for Fault-Tolerant Shift Automorphisms in Quantum LDPC Codes", arXiv:2601.09911, (2026).
[483] Andrew W. Senior, Thomas Edlich, Francisco J. H. Heras, Lei M. Zhang, Oscar Higgott, James S. Spencer, Taylor Applebaum, Sam Blackwell, Justin Ledford, Akvilė Žemgulytė, Augustin Žídek, Noah Shutty, Andrew Cowie, Yin Li, George Holland, Peter Brooks, Charlie Beattie, Michael Newman, Alex Davies, Cody Jones, Sergio Boixo, Hartmut Neven, Pushmeet Kohli, and Johannes Bausch, "A scalable and real-time neural decoder for topological quantum codes", arXiv:2512.07737, (2025).
[484] Arda Aydin, Nicolas Delfosse, and Edwin Tham, "Cyclic Hypergraph Product Code", arXiv:2511.09683, (2025).
[485] Chaithanya Naik Mude and Swamit Tannu, "Accurate Leakage Speculation for Quantum Error Correction", arXiv:2510.25661, (2025).
[486] Scott Jones and Prakash Murali, "Architecting Scalable Trapped Ion Quantum Computers using Surface Codes", arXiv:2510.23519, (2025).
[487] Dorit Aharonov, Yosi Atia, Eyal Bairey, Zvika Brakerski, Itsik Cohen, Omri Golan, Ilya Gurwich, Netanel H. Lindner, and Maor Shutman, "Syndrome aware mitigation of logical errors", arXiv:2512.23810, (2025).
[488] Jacob S. Palmer and Kaitlin N. Smith, "Boundaries of Acceptable Defectiveness: Redefining Surface Code Robustness under Heterogeneous Noise", arXiv:2510.22001, (2025).
[489] Michael E. Beverland, Malcolm Carroll, Andrew W. Cross, and Theodore J. Yoder, "Fail fast: techniques to probe rare events in quantum error correction", arXiv:2511.15177, (2025).
[490] Aleksandra Świerkowska, Jannik Pflieger, Emmanouil Giortamis, and Pramod Bhatotia, "ECCentric: An Empirical Analysis of Quantum Error Correction Codes", arXiv:2511.01062, (2025).
[491] Ignacio Gustin, Luis Mantilla Calderón, Juan B. Pérez-Sánchez, Jérôme F. Gonthier, Yuma Nakamura, Karthik Panicker, Manav Ramprasad, Zijian Zhang, Yunheng Zou, Varinia Bernales, and Alán Aspuru-Guzik, "El Agente Cuantico: Automating quantum simulations", arXiv:2512.18847, (2025).
[492] Andrey Boris Khesin, Sarah Meng Li, Boldizsár Poór, Benjamin Rodatz, John van de Wetering, and Richie Yeung, "SpiderCat: Optimal Fault-Tolerant Cat State Preparation", arXiv:2603.05391, (2026).
[493] Yotam Peled, David Zenati, and Eliya Nachmani, "Neural Minimum Weight Perfect Matching for Quantum Error Codes", arXiv:2601.00242, (2026).
[494] Tianyi Hao, Joseph Sullivan, Sivaprasad Omanakuttan, Michael A. Perlin, and Ruslan Shaydulin, "Compilation Pipeline for Predicting Algorithmic Break-Even in an Early-Fault-Tolerant Surface Code Architecture", arXiv:2511.20947, (2025).
[495] Aygul Azatovna Galimova, "Hyperbolic and Semi-Hyperbolic Floquet Codes for Photonic Quantum Computing", arXiv:2602.22906, (2026).
[496] Stasiu Wolanski, "Automated Compilation Including Dropouts: Tolerating Defective Components in Stabiliser Codes", arXiv:2512.01943, (2025).
[497] James Brown, Tarini S Hardikar, Kenny Heitritter, and Kanav Setia, "Efficient and Noise-Resilient Molecular Quantum Simulation with the Generalized Superfast Encoding", arXiv:2511.09322, (2025).
[498] Joshua Viszlai, Satvik Maurya, Swamit Tannu, Margaret Martonosi, and Frederic T. Chong, "PropHunt: Automated Optimization of Quantum Syndrome Measurement Circuits", arXiv:2601.17580, (2026).
[499] Beatriz Dias, Jan Lukas Bosse, and James R. Seddon, "Optimal and improved gate decompositions for accelerated classical simulation of near-Gaussian fermionic circuits", arXiv:2603.18869, (2026).
[500] Adeeb Kabir, Steven Nguyen, Sohan Ghosh, James Keppens, Tijil Kiran, Isaac H. Kim, Yipeng Huang, and Bart Sorée, "Sdim: A Qudit Stabilizer Simulator", arXiv:2511.12777, (2025).
[501] J. Wilson Staples, Winston Fu, and Jeff D. Thompson, "Scalable Postselection of Quantum Resources", arXiv:2603.08697, (2026).
[502] Andreas Bauer and Seth Lloyd, "Quadratic tensors as a unification of Clifford, Gaussian, and free-fermion physics", arXiv:2601.15396, (2026).
[503] Armands Strikis, Dan E. Browne, and Michael E. Beverland, "High-performance syndrome extraction circuits for quantum codes", arXiv:2603.05481, (2026).
[504] Pei Zeng, Guo Zheng, Qian Xu, and Liang Jiang, "Error-structure-tailored early fault-tolerant quantum computing", arXiv:2511.19983, (2025).
[505] Jason D. Chadwick, Willers Yang, Joshua Viszlai, and Frederic T. Chong, "A manufacturable surface code architecture for spin qubits with fast transversal logic", arXiv:2512.07131, (2025).
[506] Benjamin Anker and Dripto M. Debroy, "Optimized Measurement Schedules for the Surface Code with Dropout", arXiv:2512.10871, (2025).
[507] Yuhao Liu, Shuohao Ping, Junyu Zhou, Ethan Decker, Justin Kalloor, Mathias Weiden, Kean Chen, Yunong Shi, Ali Javadi-Abhari, Costin Iancu, and Gushu Li, "AlphaSyndrome: Tackling the Syndrome Measurement Circuit Scheduling Problem for QEC Codes", arXiv:2601.12509, (2026).
[508] David Zenati and Eliya Nachmani, "SAQ: Stabilizer-Aware Quantum Error Correction Decoder", arXiv:2512.08914, (2025).
[509] Bence Hetényi, Benjamin J. Brown, and Dominic J. Williamson, "Constant depth magic state cultivation with Clifford measurements by gauging", arXiv:2603.05429, (2026).
[510] Aygul Azatovna Galimova, "Distributed Hyperbolic Floquet Codes under Depolarizing and Erasure Noise", arXiv:2602.17969, (2026).
[511] Sean R. Garner, Nathan M. Myers, Meng Wang, Samuel Stein, Chenxu Liu, and Ang Li, "Exact and Efficient Stabilizer Simulation of Thermal-Relaxation Noise for Quantum Error Correction", arXiv:2512.09189, (2025).
[512] Aygul Azatovna Galimova, "Erasure Thresholds for Hyperbolic and Semi-Hyperbolic Surface Codes", arXiv:2602.10423, (2026).
[513] Benjamin Desef, "Optimization Techniques in Quantum Information", arXiv:2512.15831, (2025).
[514] Victor V. Albert and Philippe Faist, "Handbook of Error-Correcting Codes", arXiv:2606.11484, (2026).
[515] Mackenzie H. Shaw and Barbara M. Terhal, "Optimising Quantum Error Correction Using Morphing Circuits", arXiv:2604.09797, (2026).
[516] Rohan S. Kumar, Takahiro Tsunoda, Sophia H. Xue, Dantong Li, Robert J. Schoelkopf, and Yongshan Ding, "Co-Designing Error Mitigation and Error Detection for Logical Qubits", arXiv:2604.19871, (2026).
[517] Kun Liu, Shifan Xu, Tomas Jochym-O'Connor, Zhiyang He, Shraddha Singh, and Yongshan Ding, "In-Situ Simultaneous Magic State Injection on Arbitrary CSS qLDPC Codes", arXiv:2604.05126, (2026).
[518] Jason D. Chadwick and Frederic T. Chong, "CAbLECAR: efficiently scheduling QLDPC codes on a tileable spin qubit chip with shuttling", arXiv:2604.24739, (2026).
[519] Evan Sutcliffe and Coral M. Westoby, "Tolerating Device Failure in Distributed Quantum Computing", arXiv:2605.11088, (2026).
[520] Yanzhang Zhu, Chen-Yu Peng, Yun Hao Chen, Yeong-Luh Ueng, and Di Wu, "Lottery BP: Unlocking Quantum Error Decoding at Scale", arXiv:2605.00038, (2026).
[521] Vadym Kliuchnikov, Adam Paetznick, and Marcus P. da Silva, "Phased outcome-complete simulation", arXiv:2603.24717, (2026).
[522] Xiaohan Yang, Xuandong Sun, Zhiyi Wu, Jiawei Zhang, Ji Jiang, Xiayu Linpeng, Yuxuan Zhou, Ji Chu, Jingjing Niu, Youpeng Zhong, Song Liu, and Dapeng Yu, "Real-time Surface-Code Error Correction Using an FPGA-based Neural-Network Decoder", arXiv:2605.04892, (2026).
[523] Kun Liu, Takahiro Tsunoda, Sophia H. Xue, Evan McKinney, Zeyuan Zhou, Shifan Xu, Robert J. Schoelkopf, and Yongshan Ding, "Efficient Routing of Quantum LDPC Codes on Programmable 2D Toric Architectures", arXiv:2604.18714, (2026).
[524] Taylor Lee Patti, Paavai Pari, Yang Gao, Azzam Haidar, Thien Nguyen, Tom Lubowe, Daniel Lowell, and Brucek Khailany, "Accelerating Quantum Tensor Network Simulations with Unified Path Variations and Non-Degenerate Batched Sampling", arXiv:2604.08467, (2026).
[525] Naphan Benchasattabuse, "Resource Management in Heterogeneous Quantum Repeater Networks", arXiv:2605.25132, (2026).
[526] Abtin Molavi, Feras Saad, and Aws Albarghouthi, "Analyzing Decoders for Quantum Error Correction", arXiv:2603.20127, (2026).
[527] Cordell Mazzetti, Sayam Sethi, Rich Rines, Pranav Gokhale, and Jonathan Mark Baker, "Logical Compilation for Multi-Qubit Iceberg Patches", arXiv:2604.09956, (2026).
[528] Panayiotis Christou, Shuwen Kan, Hao Wang, and Ying Mao, "StreamingQEC: Streaming Quantum Error Correction in Tightly Integrated Quantum-Classical Systems via Certified Recurrence", arXiv:2607.13351, (2026).
[529] Brendan K. Krueger, Stephan Eidenbenz, Shamminuj Aktar, Rishabh Bhardwaj, John K. Golden, George Grattan, Abhijith Jayakumar, Anna Matsekh, Scott Pakin, Nandakishore Santhi, and Reuben Tate, "The Quantum Hamiltonian Analysis Toolkit: Lowering the Barrier to Quantum Computing with Hamiltonians", arXiv:2605.11162, (2026).
[530] Younghun Kim, Spiro Gicev, Martin Sevior, and Muhammad Usman, "LUCI on IBM Hardware: Error Suppression with Almost Half Syndrome Density", arXiv:2607.01887, (2026).
[531] Rylan Malarchick, "The verifier side of speculative window decoding: a predictability bracket, a machine-checked blast-radius bound, and a decoder-agnostic recover loop", arXiv:2607.13062, (2026).
[532] Florian Krötz, "PauLIB: A High-Performance Library for Processing Pauli Strings", arXiv:2605.25974, (2026).
[533] Gino Kwun, Dhanvi Bharadwaj, and Gokul Subramanian Ravi, "Classical State Preparation for Variational Quantum Algorithms via Reinforcement Learning", arXiv:2605.23138, (2026).
[534] Sam J. Griffiths, Jamie Friel, and Brian Vlastakis, "The limits of erasure-based postselection for quantum error mitigation", arXiv:2606.31428, (2026).
[535] Hyeok Kim and Leilani Battle, "A Design Space for Quantum Circuit Visualizations", arXiv:2607.24042, (2026).
[536] Arianna Meinking, Julie Campos, and Kenneth R. Brown, "Leveraging Correlated Decoding for Bias-Tailored Compass Codes", arXiv:2605.27598, (2026).
[537] Steven Rayan, "A diagrammatic field theory of quantum error correction", arXiv:2607.08911, (2026).
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