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The typical time-independent view of quantum error correction (QEC) codes hides significant freedom in the decomposition into circuits that are executable on hardware.
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Andrew Steane · 1996
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Klaus Mølmer and Anders Sørensen · 1999
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Navin Khaneja and Steffen Glaser · 2000
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Eric Dennis, Alexei Kitaev, Andrew Landahl and John Preskill · 2002
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Dave Bacon · 2005
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“Universal quantum computation with ideal Clifford gates and noisy ancillas”
Sergey Bravyi and Alexei Kitaev · 2005
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“An Introduction to Cartan’s KAK Decomposition for QC Programmers” Publisher: arXiv Version Number: 1, 2005
Robert. Tucci · 2005
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“Simple Pulses for Elimination of Leakage in Weakly Nonlinear Qubits” Publisher: American Physical Society
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Kevin Lalumière, J.. Gambetta and Alexandre Blais · 2010
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“Fully microwave-tunable universal gates in superconducting qubits with linear couplings and fixed transition frequencies”
Chad Rigetti and Michel Devoret · 2010
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“Balanced Product Quantum Codes” Publisher: arXiv Version Number: 3, 2020
Nikolas. Breuckmann and Jens. Eberhardt · 2012
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Sergey Bravyi, Guillaume Duclos-Cianci, David Poulin and Martin Suchara · 2012
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“Surface codes: Towards practical large-scale quantum computation” Publisher: American Physical Society
Austin. Fowler, Matteo Mariantoni, John. Martinis and Andrew. Cleland · 2012
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“Surface code quantum computing by lattice surgery”
Clare Horsman, Austin Fowler, Simon Devitt and Rodney Meter · 2012
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“Process verification of two-qubit quantum gates by randomized benchmarking”
A.. Córcoles et al · 2013
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“Coping with qubit leakage in topological codes” Publisher: American Physical Society
Austin. Fowler · 2013
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“Optimal complexity correction of correlated errors in the surface code” Publisher: arXiv Version Number: 1, 2013
Austin. Fowler · 2013
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“Understanding the effects of leakage in superconducting quantum-error-detection circuits”
Joydip Ghosh, Austin. Fowler, John. Martinis and Michael. Geller · 2013
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“Ability of stabilizer quantum error correction to protect itself from its own imperfection”
“Stim: a fast stabilizer circuit simulator”
Craig Gidney · 2021
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“Exponential suppression of bit or phase errors with cyclic error correction” _eprint: 2102.06132
Google Quantum AI et al · 2021
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“Dynamically Generated Logical Qubits” Publisher: Verein zur Forderung des Open Access Publizierens in den Quantenwissenschaften
Matthew. Hastings and Jeongwan Haah · 2021
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“PyMatching: A Python package for decoding quantum codes with minimum-weight perfect matching” Publisher: arXiv Version Number: 2, 2021
Oscar Higgott · 2021
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“Removing leakage-induced correlated errors in superconducting quantum error correction”
Matt McEwen et al · 2021
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Yuichiro Fujiwara · 2014
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“Single-Shot Fault-Tolerant Quantum Error Correction”
Héctor Bombín · 2015
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“Leakage-resilient approach to fault-tolerant quantum computing with superconducting elements”
Joydip Ghosh and Austin. Fowler · 2015
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“Measuring and Suppressing Quantum State Leakage in a Superconducting Qubit” Publisher: American Physical Society
Zijun Chen et al · 2016
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“Quantum Error Correction with Only Two Extra Qubits”
Rui Chao and Ben. Reichardt · 2018
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“Fast and Unconditional All-Microwave Reset of a Superconducting Qubit” Publisher: American Physical Society
P. Magnard et al · 2018
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“Qubit parity measurement by parametric driving in circuit QED”
Baptiste Royer, Shruti Puri and Alexandre Blais · 2018
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“Asymptotically Good Quantum and Locally Testable Classical LDPC Codes” Publisher: arXiv Version Number: 2, 2021
Pavel Panteleev and Gleb Kalachev · 2021
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“Rapid and unconditional parametric reset protocol for tunable superconducting qubits” Publisher: Springer Science and Business Media LLC
Yu Zhou et al · 2021
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“Introduction to Quantum Information Science II Lecture Notes”, 2022
Scott Aaronson · 2022
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“Adiabatic paths of Hamiltonians, symmetries of topological order, and automorphism codes” Publisher: arXiv Version Number: 2, 2022
David Aasen, Zhenghan Wang and Matthew. Hastings · 2022
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“Connectivity constrains quantum codes”
Nouédyn Baspin and Anirudh Krishna · 2022
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“A Pair Measurement Surface Code on Pentagons”
Craig Gidney · 2022
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“Benchmarking the Planar Honeycomb Code”
Craig Gidney, Michael Newman and Matt McEwen · 2022
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“Suppressing quantum errors by scaling a surface code logical qubit”, 2022
Google Quantum AI et al · 2022
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“Opportunities and Challenges in Fault-Tolerant Quantum Computation” Publisher: arXiv Version Number: 1, 2022
Daniel Gottesman · 2022
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“Boundaries for the Honeycomb Code”
Jeongwan Haah and Matthew. Hastings · 2022
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“Realizing repeated quantum error correction in a distance-three surface code” Publisher: Springer Science and Business Media LLC
Sebastian Krinner et al · 2022
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“Experimental demonstration of continuous quantum error correction”
William. Livingston et al · 2022
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“Overcoming leakage in scalable quantum error correction” Publisher: arXiv Version Number: 1, 2022
Kevin. Miao et al · 2022
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“Performance of planar Floquet codes with Majorana-based qubits” Publisher: arXiv Version Number: 2, 2022
Adam Paetznick et al · 2022
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“Hardware optimized parity check gates for superconducting surface codes” Publisher: arXiv Version Number: 1, 2022
Matthew. Reagor, Thomas. Bohdanowicz, David Perez, Eyob. Sete and William. Zeng · 2022
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“Bias-tailored quantum LDPC codes” Publisher: arXiv Version Number: 2, 2022
Joschka Roffe, Lawrence. Cohen, Armanda. Quintavalle, Daryus Chandra and Earl. Campbell · 2022
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“Matching and maximum likelihood decoding of a multi-round subsystem quantum error correction experiment”, 2022
Neereja Sundaresan et al · 2022
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“Unifying flavors of fault tolerance with the ZX calculus” Publisher: arXiv Version Number: 1, 2023
Hector Bombin, Daniel Litinski, Naomi Nickerson, Fernando Pastawski and Sam Roberts · 2023
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“Spacetime codes of Clifford circuits” Publisher: arXiv Version Number: 1, 2023
Nicolas Delfosse and Adam Paetznick · 2023
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“Data for “Relaxing Hardware Requirements for Surface Code Circuits using Time-dynamics””, 2023
Matt McEwen, Dave Bacon and Craig Gidney · 2023
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