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Many routines that one might want to run on a quantum computer can benefit from adaptive circuits, relying on mid-circuit measurements and feed-forward operations.
A one-way quantum computer
Robert Raussendorf and Hans J. Briegel · 2001
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Topological quantum memory
Eric Dennis, Alexei Kitaev, Andrew Landahl, and John Preskill · 2002
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Improved simulation of stabilizer circuits
Scott Aaronson and Daniel Gottesman · 2004
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Topological fault-tolerance in cluster state quantum computation
R Raussendorf, J Harrington, and K Goyal · 2007
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Quantum computation and quantum information
Michael A Nielsen and Isaac L Chuang · 2010
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Surface code quantum computing by lattice surgery
Dominic Horsman, Austin G Fowler, Simon Devitt, and Rodney Van Meter · 2012
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Surface codes: Towards practical large-scale quantum computation
Austin G. Fowler, Matteo Mariantoni, John M. Martinis, and Andrew N. Cleland · 2012
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Low-distance surface codes under realistic quantum noise
Yu Tomita and Krysta M. Svore · 2014
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Quantum error correction for quantum memories
Barbara M. Terhal · 2015
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Milestones toward majorana-based quantum computing
David Aasen, Michael Hell, Ryan V. Mishmash, Andrew Higginbotham, Jeroen Danon, Martin Leijnse, Thomas S. Jespersen, Joshua A. Folk, Charles M. Marcus, Karsten Flensberg, and Jason Alicea · 2016
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The small stellated dodecahedron code and friends
J. Conrad, C. Chamberland, N. P. Breuckmann, and B. M. Terhal · 2018
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Measurement-driven entanglement transition in hybrid quantum circuits
Yaodong Li, Xiao Chen, and Matthew P. A. Fisher · 2019
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A Game of Surface Codes: Large-Scale Quantum Computing with Lattice Surgery
Daniel Litinski · 2019
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Zx-calculus for the working quantum computer scientist, 2020
John van de Wetering · 2020
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Fault-tolerant quantum error correction on near-term quantum processors using flag and bridge qubits
Lingling Lao and Carmen G. Almudever · 2020
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Dynamically Generated Logical Qubits
Matthew B. Hastings and Jeongwan Haah · 2021
Cited alongside, same era.
Fusion-based quantum computation, 2021
Sara Bartolucci, Patrick Birchall, Hector Bombin, Hugo Cable, Chris Dawson, Mercedes Gimeno-Segovia, Eric Johnston, Konrad Kieling, Naomi Nickerson, Mihir Pant, Fernando Pastawski, Terry Rudolph, and Chris Sparrow · 2021
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Stim: a fast stabilizer circuit simulator
Craig Gidney · 2021
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Quantum low-density parity-check codes
Nikolas P. Breuckmann and Jens Niklas Eberhardt · 2021
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Adaptive constant-depth circuits for manipulating non-abelian anyons, 2022
Sergey Bravyi, Isaac Kim, Alexander Kliesch, and Robert Koenig · 2022
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Low-overhead fault-tolerant quantum computing using long-range connectivity
Lawrence Z. Cohen, Isaac H. Kim, Stephen D. Bartlett, and Benjamin J. Brown · 2022
Preparing matrix product states via fusion: constraints and extensions, 2024
David T. Stephen and Oliver Hart · 2024
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Characterizing mps and peps preparable via measurement and feedback, 2024
Yifan Zhang, Sarang Gopalakrishnan, and Georgios Styliaris · 2024
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Efficient long-range entanglement using dynamic circuits
Elisa Bäumer, Vinay Tripathi, Derek S. Wang, Patrick Rall, Edward H. Chen, Swarnadeep Majumder, Alireza Seif, and Zlatko K. Minev · 2024
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Low-cost noise reduction for clifford circuits, 2024
Nicolas Delfosse and Edwin Tham · 2024
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Non-abelian topological order and anyons on a trapped-ion processor
Mohsin Iqbal, Nathanan Tantivasadakarn, Ruben Verresen, Sara L. Campbell, Joan M. Dreiling, Caroline Figgatt, John P. Gaebler, Jacob Johansen, Michael Mills, Steven A. Moses, Juan M. Pino, Anthony Ransford, Mary Rowe, Peter Siegfried, Russell P. Stutz, Michael Foss-Feig, Ashvin Vishwanath, and Henrik Dreyer · 2024
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Cited alongside, same era.
Deterministic constant-depth preparation of the aklt state on a quantum processor using fusion measurements
Kevin C. Smith, Eleanor Crane, Nathan Wiebe, and S.M. Girvin · 2023
Cited alongside, same era.
Hierarchy of topological order from finite-depth unitaries, measurement, and feedforward
Nathanan Tantivasadakarn, Ashvin Vishwanath, and Ruben Verresen · 2023
Cited alongside, same era.
Measurement quantum cellular automata and anomalies in floquet codes, 2023
David Aasen, Jeongwan Haah, Zhi Li, and Roger S. K. Mong · 2023
Cited alongside, same era.
Low-depth unitary quantum circuits for dualities in one-dimensional quantum lattice models, 2023
Laurens Lootens, Clement Delcamp, Dominic Williamson, and Frank Verstraete · 2023
Cited alongside, same era.
Shortest route to non-abelian topological order on a quantum processor
Nathanan Tantivasadakarn, Ruben Verresen, and Ashvin Vishwanath · 2023
Cited alongside, same era.
A Pair Measurement Surface Code on Pentagons
Craig Gidney · 2023
Cited alongside, same era.
Linnea Grans-Samuelsson, Ryan V. Mishmash, David Aasen, Christina Knapp, Bela Bauer, Brad Lackey, Marcus P. da Silva, and Parsa Bonderson · 2024
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Ssip: automated surgery with quantum ldpc codes, 2024
Alexander Cowtan · 2024
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On the constant depth implementation of pauli exponentials, 2024
Ioana Moflic and Alexandru Paler · 2024
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Unifying flavors of fault tolerance with the zx calculus
Hector Bombin, Daniel Litinski, Naomi Nickerson, Fernando Pastawski, and Sam Roberts · 2024
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Low-overhead non-clifford fault-tolerant circuits for all non-chiral abelian topological phases, 2024
Andreas Bauer · 2024
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The x+y floquet code: A simple example for topological quantum computation in the path integral approach, 2024
Andreas Bauer · 2024
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The xyz ruby code: Making a case for a three-colored graphical calculus for quantum error correction in spacetime, 2024
Julio C. Magdalena de la Fuente, Josias Old, Alex Townsend-Teague, Manuel Rispler, Jens Eisert, and Markus Müller · 2024
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Tangling schedules eases hardware connectivity requirements for quantum error correction
György P. Gehér, Ophelia Crawford, and Earl T. Campbell · 2024
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Wire codes, 2024
Nouédyn Baspin and Dominic Williamson · 2024
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