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Various noise models have been developed in quantum computing study to describe the propagation and effect of the noise which is caused by imperfect implementation of hardware.
Efficient vector and parallel manipulation of tensor products
Paul E. Buis and Wayne R. Dyksen · 1996
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Fault-tolerant quantum computation with high threshold in two dimensions
Robert Raussendorf and Jim Harrington · 2007
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Fault-tolerant quantum computation with constant error rate
Dorit Aharonov and Michael Ben-Or · 2008
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Quantum computation and quantum information
Michael A. Nielsen and Isaac L. Chuang · 2010
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Analysis of boolean functions
Ryan ODonnell · 2014
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Noise tailoring for scalable quantum computation via randomized compiling
Joel J. Wallman and Joseph Emerson · 2016
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Procedure for systematically tuning up cross-talk in the cross-resonance gate
Sarah Sheldon, Easwar Magesan, Jerry M. Chow, and Jay M. Gambetta · 2016
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Error mitigation for short-depth quantum circuits
Kristan Temme, Sergey Bravyi, and Jay M. Gambetta · 2017
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Quantum computing in the NISQ era and beyond
John Preskill · 2018
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The ABCs of the Color Code: A Study of Topological Quantum Codes as Toy Models for Fault-Tolerant Quantum Computation and Quantum Phases Of Matter
Aleksander Marek Kubica · 2018
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Practical quantum error mitigation for near-future applications
Suguru Endo, Simon C. Benjamin, and Ying Li · 2018
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Combining push-forward measures and bayes' rule to construct consistent solutions to stochastic inverse problems
T. Butler, J. Jakeman, and T. Wildey · 2018
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Quantum Algorithm Implementations for Beginners
J. Abhijith, Adetokunbo Adedoyin, John Ambrosiano, Petr Anisimov, Andreas Bärtschi, William Casper, Gopinath Chennupati, Carleton Coffrin, Hristo Djidjev, David Gunter, Satish Karra, Nathan Lemons, Shizeng Lin, Alexander Malyzhenkov, David Mascarenas, Susan Mniszewski, Balu Nadiga, Daniel O’Malley, Diane Oyen, Scott Pakin, Lakshman Prasad, Randy Roberts, Phillip Romero, Nandakishore Santhi, Nikolai Sinitsyn, Pieter J. Swart, James G. Wendelberger, Boram Yoon, Richard Zamora, Wei Zhu, Stephan Eidenbenz, Patrick J. Coles, Marc Vuffray, and Andrey Y. Lokhov · 2018
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Encoding a qubit in a trapped-ion mechanical oscillator
C. Flühmann, T. L. Nguyen, M. Marinelli, V. Negnevitsky, K. Mehta, and J. P. Home · 2019
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Rigorous measurement error correction
Michael R Geller · 2020
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Classically Simulating Quantum Circuits with Local Depolarizing Noise
Yasuhiro Takahashi, Yuki Takeuchi, and Seiichiro Tani · 2020
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RStan: the R interface to Stan, 2020
Stan Development Team · 2020
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Quantum information processing with bosonic qubits in circuit qed
Atharv Joshi, Kyungjoo Noh, and Yvonne Y Gao · 2021
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Mitigating measurement errors in multiqubit experiments
Sergey Bravyi, Sarah Sheldon, Abhinav Kandala, David C. Mckay, and Jay M. Gambetta · 2021
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Readout rebalancing for near-term quantum computers
Rebecca Hicks, Christian W. Bauer, and Benjamin Nachman · 2021
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Abhinav Kandala, Kristan Temme, Antonio D Córcoles, Antonio Mezzacapo, Jerry M Chow, and Jay M Gambetta · 2019
Cited alongside, same era.
Detector tomography on IBM quantum computers and mitigation of an imperfect measurement
Yanzhu Chen, Maziar Farahzad, Shinjae Yoo, and Tzu-Chieh Wei · 2019
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R: A Language and Environment for Statistical Computing
R Core Team · 2019
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Quantum computers as universal quantum simulators: State-of-the-art and perspectives
Francesco Tacchino, Alessandro Chiesa, Stefano Carretta, and Dario Gerace · 2019
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Quantum computing with rotation-symmetric bosonic codes
Arne L. Grimsmo, Joshua Combes, and Ben Q. Baragiola · 2020
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Mitigation of readout noise in near-term quantum devices by classical post-processing based on detector tomography
Filip B. Maciejewski, Zoltán Zimborás, and Michał Oszmaniec · 2020
Cited alongside, same era.
Hartree-fock on a superconducting qubit quantum computer
Google AI Quantum and Collaborators, Frank Arute, Kunal Arya, Ryan Babbush, Dave Bacon, Joseph C. Bardin, Rami Barends, Sergio Boixo, Michael Broughton, Bob B. Buckley, David A. Buell, Brian Burkett, Nicholas Bushnell, Yu Chen, Zijun Chen, Benjamin Chiaro, Roberto Collins, William Courtney, Sean Demura, Andrew Dunsworth, Edward Farhi, Austin Fowler, Brooks Foxen, Craig Gidney, Marissa Giustina, Rob Graff, Steve Habegger, Matthew P. Harrigan, Alan Ho, Sabrina Hong, Trent Huang, William J. Huggins, Lev Ioffe, Sergei V. Isakov, Evan Jeffrey, Zhang Jiang, Cody Jones, Dvir Kafri, Kostyantyn Kechedzhi, Julian Kelly, Seon Kim, Paul V. Klimov, Alexander Korotkov, Fedor Kostritsa, David Landhuis, Pavel Laptev, Mike Lindmark, Erik Lucero, Orion Martin, John M. Martinis, Jarrod R. McClean, Matt McEwen, Anthony Megrant, Xiao Mi, Masoud Mohseni, Wojciech Mruczkiewicz, Josh Mutus, Ofer Naaman, Matthew Neeley, Charles Neill, Hartmut Neven, Murphy Yuezhen Niu, Thomas E. O’Brien, Eric Ostby, Andre Petukhov, Harald Putterman, Chris Quintana, Pedram Roushan, Nicholas C. Rubin, Daniel Sank, Kevin J. Satzinger, Vadim Smelyanskiy, Doug Strain, Kevin J. Sung, Marco Szalay, Tyler Y. Takeshita, Amit Vainsencher, Theodore White, Nathan Wiebe, Z. Jamie Yao, Ping Yeh, and Adam Zalcman
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Quantum supremacy using a programmable superconducting processor
Frank Arute, Kunal Arya, Ryan Babbush, Dave Bacon, Joseph C. Bardin, Rami Barends, Rupak Biswas, Sergio Boixo, Fernando G. S. L. Brandao, David A. Buell, Brian Burkett, Yu Chen, Zijun Chen, Ben Chiaro, Roberto Collins, William Courtney, Andrew Dunsworth, Edward Farhi, Brooks Foxen, Austin Fowler, Craig Gidney, Marissa Giustina, Rob Graff, Keith Guerin, Steve Habegger, Matthew P. Harrigan, Michael J. Hartmann, Alan Ho, Markus Hoffmann, Trent Huang, Travis S. Humble, Sergei V. Isakov, Evan Jeffrey, Zhang Jiang, Dvir Kafri, Kostyantyn Kechedzhi, Julian Kelly, Paul V. Klimov, Sergey Knysh, Alexander Korotkov, Fedor Kostritsa, David Landhuis, Mike Lindmark, Erik Lucero, Dmitry Lyakh, Salvatore Mandrà, Jarrod R. McClean, Matthew McEwen, Anthony Megrant, Xiao Mi, Kristel Michielsen, Masoud Mohseni, Josh Mutus, Ofer Naaman, Matthew Neeley, Charles Neill, Murphy Yuezhen Niu, Eric Ostby, Andre Petukhov, John C. Platt, Chris Quintana, Eleanor G. Rieffel, Pedram Roushan, Nicholas C. Rubin, Daniel Sank, Kevin J. Satzinger, Vadim Smelyanskiy, Kevin J. Sung, Matthew D. Trevithick, Amit Vainsencher, Benjamin Villalonga, Theodore White, Z. Jamie Yao, Ping Yeh, Adam Zalcman, Hartmut Neven, and John M. Martinis
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Paul D. Nation, Hwajung Kang, Neereja Sundaresan, and Jay M. Gambetta · 2021
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Measurement error mitigation in quantum computers through classical bit-flip correction
Lena Funcke, Tobias Hartung, Karl Jansen, Stefan Kühn, Paolo Stornati, and Xiaoyang Wang · 2022
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Qcol-lu/bayesian-error-characterization-and-mitigation, August 2022
Muqing Zheng · 2022
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