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In order to support near-term applications of quantum computing, a new compute paradigm has emerged--the quantum-classical cloud--in which quantum computers (QPUs) work in tandem with classical computers (CPUs) via a shared cloud infrastructure.
Manufacturing low dissipation superconducting quantum processors, 2019, arXiv:1901.08042 [quant-ph]
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A volumetric framework for quantum computer benchmarks, 2019, arXiv:1904.05546 [quant-ph]
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Superconducting qubits: Current state of play, 2019, arXiv:1905.13641 [quant-ph]
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Isaac L. Chuang, Neil Gershenfeld, and Mark Kubinec · 1998
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Implementation of the Deutsch–Jozsa algorithm on an ion-trap quantum computer
Stephan Gulde, Mark Riebe, Gavin PT Lancaster, Christoph Becher, Jürgen Eschner, Hartmut Häffner, Ferdinand Schmidt-Kaler, Isaac L Chuang, and Rainer Blatt · 2003
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Going beyond bell’s theorem, 2007, arXiv:0712.0921 [quant-ph]
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Reference frames, superselection rules, and quantum information
Stephen D. Bartlett, Terry Rudolph, and Robert W. Spekkens · 2007
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Matplotlib: A 2d graphics environment
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Demonstration of two-qubit algorithms with a superconducting quantum processor
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SP 800-145. The NIST definition of cloud computing
Peter M. Mell and Timothy Grance · 2011
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Quantum Computation and Quantum Information: 10th Anniversary Edition
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Quantum computing and the entanglement frontier, 2012, arXiv:1203.5813 [quant-ph]
John Preskill · 2012
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Feedback control of a solid-state qubit using high-fidelity projective measurement
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A quantum approximate optimization algorithm, 2014, arXiv:1411.4028 [quant-ph]
Edward Farhi, Jeffrey Goldstone, and Sam Gutmann · 2014
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Barren plateaus in quantum neural network training landscapes
Jarrod R. McClean, Sergio Boixo, Vadim N. Smelyanskiy, Ryan Babbush, and Hartmut Neven · 2018
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Pulsed Reset Protocol for Fixed-Frequency Superconducting Qubits
D.J. Egger, Max Werninghaus, Marc Ganzhorn, Gian Salis, Andreas Fuhrer, P. Müller, and Stefan Filipp · 2018
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Fast and Unconditional All-Microwave Reset of a Superconducting Qubit
Paul Magnard, Philipp Kurpiers, Baptiste Royer, Theo Walter, J.-C. Besse, Simone Gasparinetti, Marek Pechal, Johannes Heinsoo, Simon Storz, Alexandre Blais, and Andreas Wallraff · 2018
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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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Tomography via correlation of noisy measurement records
Colm A. Ryan, Blake R. Johnson, Jay M. Gambetta, Jerry M. Chow, Marcus P. da Silva, Oliver E. Dial, and Thomas A. Ohki · 2015
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Initialization and characterization of open quantum systems ( http://hdl.handle.net/10012/9557 ), 2015
Wood, Christopher James · 2015
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High-Fidelity Quantum Logic Gates Using Trapped-Ion Hyperfine Qubits
C. J. Ballance, T. P. Harty, N. M. Linke, M. A. Sepiol, and D. M. Lucas · 2016
Cited alongside, same era.
The theory of variational hybrid quantum-classical algorithms
Jarrod R McClean, Jonathan Romero, Ryan Babbush, and Alán Aspuru-Guzik · 2016
Cited alongside, same era.
Scalable quantum simulation of molecular energies
P. J. J. O’Malley, R. Babbush, I. D. Kivlichan, J. Romero, J. R. McClean, R. Barends, J. Kelly, P. Roushan, A. Tranter, N. Ding, B. Campbell, Y. Chen, Z. Chen, B. Chiaro, A. Dunsworth, A. G. Fowler, E. Jeffrey, E. Lucero, A. Megrant, J. Y. Mutus, M. Neeley, C. Neill, C. Quintana, D. Sank, A. Vainsencher, J. Wenner, T. C. White, P. V. Coveney, P. J. Love, H. Neven, A. Aspuru-Guzik, and J. M. Martinis · 2016
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A practical quantum instruction set architecture, 2016, arXiv:1608.03355 [quant-ph]
Robert S. Smith, Michael J. Curtis, and William J. Zeng · 2016
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Gavin E. Crooks · 2018
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Quantum optimization using variational algorithms on near-term quantum devices
Nikolaj Moll, Panagiotis Barkoutsos, Lev S Bishop, Jerry M Chow, Andrew Cross, Daniel J Egger, Stefan Filipp, Andreas Fuhrer, Jay M Gambetta, Marc Ganzhorn, and et al · 2018
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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 GSL Brandao, David A Buell, et al · 2019
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Validating quantum computers using randomized model circuits
Andrew W. Cross, Lev S. Bishop, Sarah Sheldon, Paul D. Nation, and Jay M. Gambetta · 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, and Raphael C Pooser · 2019
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Forest Benchmarking: QCVV using PyQuil
Kyle V. Gulshen, Joshua Combes, Matthew P. Harrigan, Peter J. Karalekas, Marcus P. da Silva, M. Sohaib Alam, Amy Brown, Shane Caldwell, Lauren Capelluto, Gavin Crooks, Daniel Girshovich, Blake R. Johnson, Eric C. Peterson, Anthony Polloreno, Nicholas C. Rubin, Colm A. Ryan, Alexa Staley, Nikolas A. Tezak, and Joseph Valery · 2019
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Demonstration of a parametrically activated entangling gate protected from flux noise
Sabrina S. Hong, Alexander T. Papageorge, Prasahnt Sivarajah, Genya Crossman, Nicolas Didier, Anthony M. Polloreno, Eyob A. Sete, Stefan W. Turkowski, Marcus P. da Silva, and Blake R. Johnson · 2020
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quilc: An Optimizing Quil Compiler
Robert S Smith, Eric C Peterson, Erik J Davis, and Mark G Skilbeck · 2020
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Quil: A Portable Quantum Instruction Language
Robert S Smith · 2020
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Supplementary notebooks and datasets for: A quantum-classical cloud platform optimized for variational hybrid algorithms
Peter J. Karalekas · 2020
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PyQuil: Quantum Programming in Python
Peter J. Karalekas, Matthew P. Harrigan, Steven Heidel, William J. Zeng, M. Sohaib Alam, Mike I. Appleby, Lauren E. Capelluto, Gavin E. Crooks, Michael J. Curtis, Erik J. Davis, Kyle V. Gulshen, Christopher B. Osborn, Johannes S. Otterbach, Eric C. Peterson, Anthony M. Polloreno, Guen Prawiroatmodjo, Nicholas C. Rubin, Mark G. Skilbeck, Nikolas A. Tezak, and Robert S. Smith · 2020
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SciPy 1.0: fundamental algorithms for scientific computing in Python
Pauli Virtanen, Ralf Gommers, Travis E. Oliphant, Matt Haberland, Tyler Reddy, David Cournapeau, Evgeni Burovski, Pearu Peterson, Warren Weckesser, and et al · 2020
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qvm: The Rigetti Quantum Virtual Machine
Robert S Smith · 2020
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