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Existing protocols for benchmarking current quantum co-processors fail to meet the usual standards for assessing the performance of High-Performance-Computing platforms.
Absence of mott transition in an exact solution of the short-range, one-band model in one dimension
Elliott H. Lieb and F. Y. Wu · 1968
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A Direct Search Optimization Method That Models the Objective and Constraint Functions by Linear Interpolation
M. J. D. Powell · 1994
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The LINPACK benchmark: Past, present and future
Jack J. Dongarra, Piotr Luszczek, and Antoine Petite · 2003
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Improved exact solvers for weighted max-sat
Teresa Alsinet, Felip Manyà, and Jordi Planes · 2005
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An Efficient Method to Convert Arbitrary Quantum Circuits to Ones on a Linear Nearest Neighbor Architecture
Yuichi Hirata, Masaki Nakanishi, Shigeru Yamashita, and Yasuhiko Nakashima · 2009
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Characterizing quantum gates via randomized benchmarking
Easwar Magesan, Jay M Gambetta, and Joseph Emerson · 2012
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Robust, self-consistent, closed-form tomography of quantum logic gates on a trapped ion qubit
Robin Blume-Kohout, John King Gamble, Erik Nielsen, Jonathan Mizrahi, Jonathan D Sterk, and Peter Maunz · 2013
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Self-consistent quantum process tomography
Seth T. Merkel, Jay M. Gambetta, John A. Smolin, Stefano Poletto, Antonio D. Córcoles, Blake R. Johnson, Colm A. Ryan, and Matthias Steffen · 2013
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A Quantum Approximate Optimization Algorithm
Edward Farhi, Jeffrey Goldstone, and Sam Gutmann · 2014
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A variational eigenvalue solver on a photonic quantum processor
Alberto Peruzzo, Jarrod McClean, Peter Shadbolt, Man-Hong Yung, Xiao-Qi Zhou, Peter J. Love, Alán Aspuru-Guzik, and Jeremy L. O’Brien · 2014
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Introduction to Quantum Gate Set Tomography
Daniel Greenbaum · 2015
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Complexity-Theoretic Foundations of Quantum Supremacy Experiments
Scott Aaronson and Lijie Chen · 2016
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Extremal cuts of sparse random graphs
Amir Dembo, Andrea Montanari, and Subhabrata Sen · 2017
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A blueprint for demonstrating quantum supremacy with superconducting qubits
C. Neill, P. Roushan, K. Kechedzhi, S. Boixo, S. V. Isakov, V. Smelyanskiy, R. Barends, B. Burkett, Y. Chen, Z. Chen, B. Chiaro, A. Dunsworth, A. Fowler, B. Foxen, R. Graff, E. Jeffrey, J. Kelly, E. Lucero, A. Megrant, J. Mutus, M. Neeley, C. Quintana, D. Sank, A. Vainsencher, J. Wenner, T. C. White, H. Neven, and J. M. Martinis · 2017
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What Randomized Benchmarking Actually Measures
Timothy Proctor, Kenneth Rudinger, Kevin Young, Mohan Sarovar, and Robin Blume-Kohout · 2017
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On the max-cut of sparse random graphs
David Gamarnik and Quan Li · 2018
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Quantum Computing in the NISQ era and beyond
John Preskill · 2018
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A volumetric framework for quantum computer benchmarks
Robin Blume-Kohout and Kevin C. Young · 2019
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Validating quantum computers using randomized model circuits
Random circuit block-encoded matrix and a proposal of quantum LINPACK benchmark
Yulong Dong and Lin Lin · 2020
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https://quantum-computing.ibm.com/
Ibm quantum experience website · 2020
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Learning to Optimize Variational Quantum Circuits to Solve Combinatorial Problems
Sami Khairy, Ruslan Shaydulin, Lukasz Cincio, Yuri Alexeev, and Prasanna Balaprakash · 2020
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Classical Optimizers for Noisy Intermediate-Scale Quantum Devices
Wim Lavrijsen, Ana Tudor, Juliane Muller, Costin Iancu, and Wibe de Jong · 2020
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Correlated randomized benchmarking
David C. McKay, Andrew W. Cross, Christopher J. Wood, and Jay M. Gambetta · 2020
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Architecture aware compilation of quantum circuits via lazy synthesis, 2020
Simon Martiel and Timothée Goubault de Brugière · 2020
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Andrew W Cross, Lev S Bishop, Sarah Sheldon, Paul D Nation, and Jay M Gambetta · 2019
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Characterizing large-scale quantum computers via cycle benchmarking
Alexander Erhard, Joel James Wallman, Lukas Postler, Michael Meth, Roman Stricker, Esteban Adrian Martinez, Philipp Schindler, Thomas Monz, Joseph Emerson, and Rainer Blatt · 2019
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Quantum Chemistry as a Benchmark for Near-Term Quantum Computers
Alexander J. McCaskey, Zachary P. Parks, Jacek Jakowski, Shirley V. Moore, Titus D. Morris, Travis S. Humble, Raphael C. Pooser, V M oore, Titus D. Morris, Travis S. Humble, and Raphael C. Pooser · 2019
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Direct Randomized Benchmarking for Multiqubit Devices
Timothy J. Proctor, Arnaud Carignan-Dugas, Kenneth Rudinger, Erik Nielsen, Robin Blume-Kohout, and Kevin Young · 2019
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Benchmarking an 11-qubit quantum computer
K. Wright, K. M. Beck, S. Debnath, J. M. Amini, Y. Nam, N. Grzesiak, J. S. Chen, N. C. Pisenti, M. Chmielewski, C. Collins, K. M. Hudek, J. Mizrahi, J. D. Wong-Campos, S. Allen, J. Apisdorf, P. Solomon, M. Williams, A. M. Ducore, A. Blinov, S. M. Kreikemeier, V. Chaplin, M. Keesan, C. Monroe, and J. Kim · 2019
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An application benchmark for fermionic quantum simulations
Pierre-Luc Dallaire-Demers, Michał Stȩchły, Jerome F. Gonthier, Ntwali Toussaint Bashige, Jonathan Romero, and Yudong Cao · 2020
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Operational, gauge-free quantum tomography
Olivia Di Matteo, John Gamble, Chris Granade, Kenneth Rudinger, and Nathan Wiebe · 2020
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Application-Motivated, Holistic Benchmarking of a Full Quantum Computing Stack
Daniel Mills, Seyon Sivarajah, Travis L. Scholten, and Ross Duncan · 2020
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Quantum circuit optimizations for NISQ architectures
Beatrice Nash, Vlad Gheorghiu, and Michele Mosca · 2020
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Measuring the Capabilities of Quantum Computers
Timothy Proctor, Kenneth Rudinger, Kevin Young, Erik Nielsen, and Robin Blume-Kohout · 2020
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https://www.rigetti.com/what
Rigetti computing website · 2020
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Architecture-aware synthesis of phase polynomials for nisq devices, 2020
Arianne Meijer van de Griend and Ross Duncan · 2020
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Quantum computational advantage using photons
Han-Sen Zhong, Hui Wang, Yu-Hao Deng, Ming-Cheng Chen, Li-Chao Peng, Yi-Han Luo, Jian Qin, Dian Wu, Xing Ding, Yi Hu, Peng Hu, Xiao-Yan Yang, Wei-Jun Zhang, Hao Li, Yuxuan Li, Xiao Jiang, Lin Gan, Guangwen Yang, Lixing You, Zhen Wang, Li Li, Nai-Le Liu, Chao-Yang Lu, and Jian-Wei Pan · 2020
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