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Classical simulation of quantum computers will continue to play an essential role in the progress of quantum information science, both for numerical studies of quantum algorithms and for modeling noise and errors.
Particle Swarm Optimization
James Kennedy and Russell Eberhart · 1995
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Quantum mechanics helps in searching for a needle in a haystack
Lov K. Grover · 1997
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Polynomial-time algorithms for prime factorization and discrete logarithms on a quantum computer
Peter W. Shor · 1999
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Fault-tolerant quantum computation by anyons
A. Yu. Kitaev · 2002
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General-purpose parallel simulator for quantum computing
Jumpei Niwa, Keiji Matsumoto, and Hiroshi Imai · 2002
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Massively parallel quantum computer simulator
K. De Raedt, K. Michielsen, H. De Raedt, B. Trieu, G. Arnold, M. Richter, Th. Lippert, H. Watanabe, and N. Ito · 2007
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Simulating quantum computation by contracting tensor networks
Igor L. Markov and Yaoyun Shi · 2008
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Noise gates for decoherent quantum circuits
Angelo Bassi and Dirk André Deckert · 2008
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Large-scale simulations of error-prone quantum computation devices
Doan Binh Trieu · 2009
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Quantum computer simulation using the CUDA programming model
Eladio Gutiérrez, Sergio Romero, María A. Trenas, and Emilio L. Zapata · 2010
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Good parameters for particle swarm optimization
Magnus Erik Pedersen · 2010
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Parallel quantum computer simulation on the gpu
A. Amariutei and S. Caraiman · 2011
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A variational eigenvalue solver on a photonic quantum processor
Alberto Peruzzo, Jarrod R. McClean, Peter J. Shadbolt, Man-Hong Yung, Xiao-Qi Zhou, Peter J. Love, Alán Aspuru-Guzik, and Jeremy L. O’Brien · 2014
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A quantum approximate optimization algorithm
Edward Farhi, Jeffrey Goldstone, and Sam Gutmann · 2014
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A quantum approximate optimization algorithm applied to a bounded occurrence constraint problem
E. Farhi, J. Goldstone, and S. Gutmann · 2014
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Quantum computer simulation on multi-GPU incorporating data locality
Pei Zhang, Jiabin Yuan, and Xiangwen Lu · 2015
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Tensor Network Quantum Virtual Machine (TNQVM), 2016
Alexander J. McCaskey · 2016
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qhipster: The quantum high performance software testing environment, 2016
Mikhail Smelyanskiy, Nicolas P. D. Sawaya, and Alán Aspuru-Guzik · 2016
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Quantum supremacy through the quantum approximate optimization algorithm
E. Farhi and A. W Harrow · 2016
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Training a quantum optimizer
D. Wecker, M. B. Hastings, and M. Troyer · 2016
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Performance of qaoa on typical instances of constraint satisfaction problems with bounded degree
C. Yen-Yu Lin and Y. Zhu · 2016
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Error sensitivity to environmental noise in quantum circuits for chemical state preparation
Nicolas P. D. Sawaya, Tim Menke, Thi Ha Kyaw, Sonika Johri, Alán Aspuru-Guzik, and Gian Giacomo Guerreschi · 2019
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Experimental error mitigation via symmetry verification in a variational quantum eigensolver
R. Sagastizabal, X. Bonet-Monroig, M. Singh, M. Adriaan Rol, C. C. Bultink, Xiang Fu, C. H. Price, V. P. Ostroukh, N. Muthusubramanian, A. Bruno, M. Beekman, N. Haider, Thomas E. O’Brien, and Leo DiCarlo · 2019
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QAOA for Max-Cut requires hundreds of qubits for quantum speed-up
Gian Giacomo Guerreschi and Anne Y. Matsuura · 2019
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Not All Qubits Are Created Equal A Case for Variability-Aware Policies for NISQ-Era Quantum Computers
Swamit S Tannu and Moinuddin K Qureshi · 2019
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Mapping of quantum circuits onto NISQ superconducting processors
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Nicolas P. D. Sawaya, Mikhail Smelyanskiy, Jarrod R. McClean, and Alán Aspuru-Guzik · 2016
Cited alongside, same era.
0.5 petabyte simulation of a 45-qubit quantum circuit
Thomas Häner and Damian S. Steiger · 2017
Cited alongside, same era.
QX: A high-performance quantum computer simulation platform
N. Khammassi, I. Ashraf, X. Fu, C.G. Almudever, and K. Bertels · 2017
Cited alongside, same era.
Breaking the 49-qubit barrier in the simulation of quantum circuits, 2017
Edwin Pednault, John A. Gunnels, Giacomo Nannicini, Lior Horesh, Thomas Magerlein, Edgar Solomonik, Erik W. Draeger, Eric T. Holland, and Robert Wisnieff · 2017
Cited alongside, same era.
Practical optimization for hybrid quantum-classical algorithms
Gian Giacomo Guerreschi and M. Smelyanskiy · 2017
Cited alongside, same era.
qTorch: The quantum tensor contraction handler
E. Schuyler Fried, Nicolas P. D. Sawaya, Yudong Cao, Ian D. Kivlichan, Jhonathan Romero, and Alán Aspuru-Guzik · 2018
Cited alongside, same era.
quimb: a python library for quantum information and many-body calculations
Johnnie Gray · 2018
Cited alongside, same era.
Lingling Lao, Daniel M. Manzano, Hans van Someren, Imran Ashraf, and Carmina G. Almudever · 2019
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A flexible high-performance simulator for verifying and benchmarking quantum circuits implemented on real hardware
Benjamin Villalonga, Sergio Boixo, Bron Nelson, Christopher Henze, Eleanor Rieffel, Rupak Biswas, and Salvatore Mandrà · 2019
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QuEST and high performance simulation of quantum computers
Tyson Jones, Anna Brown, Ian Bush, and Simon C. Benjamin · 2019
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Massively parallel quantum computer simulator, eleven years later
Hans De Raedt, Fengping Jin, Dennis Willsch, Madita Willsch, Naoki Yoshioka, Nobuyasu Ito, Shengjun Yuan, and Kristel Michielsen · 2019
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https://pennylane.ai/
Pennylane · 2020
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https://qiskit.org/
Qiskit · 2020
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https://www.rigetti.com/forest-api
Forest · 2020
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https://azure.microsoft.com/en-us/services/quantum/
Azure quantum · 2020
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https://projectq.ch/
Projectq · 2020
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https://www.zapatacomputing.com/orquestra
Orquestra · 2020
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https://aws.amazon.com/braket/
Braket · 2020
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https://github.com/intel/Intel-QS
Intel quantum simulator · 2020
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