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Whether it is at the fabrication stage or during the course of the quantum computation, e.g.
Scheme for reducing decoherence in quantum computer memory
Peter W. Shor · 1995
Earlier work this paper cites.
A scalable decoder micro-architecture for fault-tolerant quantum computing
Poulami Das, Christopher A. Pattison, Srilatha Manne, Douglas Carmean, Krysta Svore, Moinuddin Qureshi, and Nicolas Delfosse · 2001
Earlier work this paper cites.
Quantum error correction of a qubit loss in an addressable atomic system
J. Vala, K. B. Whaley, and D. S. Weiss · 2005
Earlier work this paper cites.
Thresholds for topological codes in the presence of loss
Thomas M. Stace, Sean D. Barrett, and Andrew C. Doherty · 2009
Earlier work this paper cites.
Surface codes: Towards practical large-scale quantum computation
Austin G. Fowler, Matteo Mariantoni, John M. Martinis, and Andrew N. Cleland · 2012
Earlier work this paper cites.
Universal fault-tolerant quantum computation with only transversal gates and error correction
Adam Paetznick and Ben W. Reichardt · 2013
Earlier work this paper cites.
Quantum error correction for quantum memories
Barbara M. Terhal · 2015
Earlier work this paper cites.
University of oxford advanced research computing
Andrew Richards · 2015
Earlier work this paper cites.
Roads towards fault-tolerant universal quantum computation
Earl T. Campbell, Barbara M. Terhal, and Christophe Vuillot · 2017
Earlier work this paper cites.
Assessing the progress of trapped-ion processors towards fault-tolerant quantum computation
Alejandro Bermudez, Xiaosi Xu, Ramil Nigmatullin, Joe O’Gorman, Vlad Negnevitsky, Philipp Schindler, Thomas Monz, UG Poschinger, Cornelius Hempel, Jonathan Home, et al · 2017
Earlier work this paper cites.
Poking holes and cutting corners to achieve clifford gates with the surface code
Benjamin J. Brown, Katharina Laubscher, Markus S. Kesselring, and James R. Wootton · 2017
Earlier work this paper cites.
Surface code error correction on a defective lattice
Shota Nagayama, Austin G Fowler, Dominic Horsman, Simon J Devitt, and Rodney Van Meter · 2017
Cited alongside, same era.
Fault-tolerance thresholds for the surface code with fabrication errors
James M. Auger, Hussain Anwar, Mercedes Gimeno-Segovia, Thomas M. Stace, and Dan E. Browne · 2017
Cited alongside, same era.
Taming the instruction bandwidth of quantum computers via hardware-managed error correction
Swamit S. Tannu, Zachary A. Myers, Prashant J. Nair, Douglas M. Carmean, and Moinuddin K. Qureshi · 2017
Cited alongside, same era.
Handling leakage with subsystem codes
Natalie C Brown, Michael Newman, and Kenneth R Brown · 2019
Cited alongside, same era.
Code deformation and lattice surgery are gauge fixing
Christophe Vuillot, Lingling Lao, Ben Criger, Carmen Garcí a Almudéver, Koen Bertels, and Barbara M Terhal · 2019
Cited alongside, same era.
Nature Physics , 18(1):107–111, dec 2021
Resolving catastrophic error bursts from cosmic rays in large arrays of superconducting qubits · 2021
Later among the works it cites.
Hardware-efficient, fault-tolerant quantum computation with rydberg atoms
Iris Cong, Harry Levine, Alexander Keesling, Dolev Bluvstein, Sheng-Tao Wang, and Mikhail D. Lukin · 2021
Later among the works it cites.
Quantum computing is scalable on a planar array of qubits with fabrication defects
Armands Strikis, Simon C. Benjamin, and Benjamin J. Brown · 2021
Later among the works it cites.
Subsystem codes with high thresholds by gauge fixing and reduced qubit overhead
Oscar Higgott and Nikolas P. Breuckmann · 2021
Later among the works it cites.
Lilliput: A lightweight low-latency lookup-table based decoder for near-term quantum error correction
Poulami Das, Aditya Locharla, and Cody Jones · 2021
Later among the works it cites.
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John M. Martinis · 2020
Cited alongside, same era.
Decoding across the quantum low-density parity-check code landscape
Joschka Roffe, David R. White, Simon Burton, and Earl Campbell · 2020
Cited alongside, same era.
Linear-time maximum likelihood decoding of surface codes over the quantum erasure channel
Nicolas Delfosse and Gilles Zémor · 2020
Cited alongside, same era.
How to factor 2048 bit RSA integers in 8 hours using 20 million noisy qubits
Craig Gidney and Martin Ekerå · 2021
Cited alongside, same era.
Nature , 595(7867):383–387, 2021
Exponential suppression of bit or phase errors with cyclic error correction · 2021
Cited alongside, same era.
Correlated charge noise and relaxation errors in superconducting qubits
C. D. Wilen, S. Abdullah, N. A. Kurinsky, C. Stanford, L. Cardani, G. D’Imperio, C. Tomei, L. Faoro, L. B. Ioffe, C. H. Liu, A. Opremcak, B. G. Christensen, J. L. DuBois, and R. McDermott · 2021
Cited alongside, same era.
Distributed quantum error correction for chip-level catastrophic errors
Qian Xu, Alireza Seif, Haoxiong Yan, Nam Mannucci, Bernard Ousmane Sane, Rodney Van Meter, Andrew N. Cleland, and Liang Jiang · 2022
Closest in time.
Parallel window decoding enables scalable fault tolerant quantum computation
Luka Skoric, Dan E. Browne, Kenton M. Barnes, Neil I. Gillespie, and Earl T. Campbell · 2022
Closest in time.
Q3de: A fault-tolerant quantum computer architecture for multi-bit burst errors by cosmic rays
Yasunari Suzuki, Takanori Sugiyama, Tomochika Arai, Wang Liao, Koji Inoue, and Teruo Tanimoto · 2022
Closest in time.
Nature , 614(7949):676–681, 2023
Suppressing quantum errors by scaling a surface code logical qubit · 2023
Closest in time.
Relaxing hardware requirements for surface code circuits using time-dynamics
Matt McEwen, Dave Bacon, and Craig Gidney · 2023
Closest in time.