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Contextuality and negativity of the Wigner function are two notions of non-classicality for quantum systems.
On the quantum correction for thermodynamic equilibrium
Eugene Wigner · 1932
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On the problem of hidden variables in quantum mechanics
John S Bell · 1966
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The problem of hidden variables in quantum mechanics
Simon Kochen and EP Specker · 1975
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Quantum algorithms revisited
Richard Cleve, Artur Ekert, Chiara Macchiavello, and Michele Mosca · 1998
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Serge Lang · 2002
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Efficient classical simulation of slightly entangled quantum computations
Guifré Vidal · 2003
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Discrete phase space based on finite fields
Kathleen S Gibbons, Matthew J Hoffman, and William K Wootters · 2004
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Discrete wigner functions and quantum computational speedup
Ernesto F Galvao · 2005
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The quantum fft can be classically simulated
Dorit Aharonov, Zeph Landau, and Johann Makowsky · 2006
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Hudson’s theorem for finite-dimensional quantum systems
David Gross · 2006
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Classical simulation versus universality in measurement-based quantum computation
Maarten Van den Nest, Wolfgang Dür, Guifré Vidal, and Hans Briegel, J · 2007
Cited alongside, same era.
Efficient classical simulation of the approximate quantum fourier transform
Nadav Yoran and Anthony J Short · 2007
Cited alongside, same era.
Efficient classical simulation of the quantum fourier transform
Daniel E Browne · 2007
Cited alongside, same era.
Simulating quantum computation by contracting tensor networks
I. Markov and Y. Shi · 2008
Cited alongside, same era.
Efficiently contractable quantum circuits cannot produce much entanglement
Nadav Yoran · 2008
Cited alongside, same era.
Negativity and contextuality are equivalent notions of nonclassicality
Negative quasi-probability as a resource for quantum computation
Victor Veitch, Christopher Ferrie, David Gross, and Joseph Emerson · 2012
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Universal quantum computation with little entanglement
Maarten Van den Nest · 2013
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Contextuality in measurement-based quantum computation
Robert Raussendorf · 2013
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Adaptive Quantum Computation, Constant Depth Quantum Circuits and Arthur-Merlin Games
Barbara M. Terhal and David P. DiVincenzo · 2014
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Contextuality supplies the magic for quantum computation
Mark Howard, Joel Wallman, Victor Veitch, and Joseph Emerson · 2014
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Quantum interference as a resource for quantum speedup
Dan Stahlke · 2014
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Robert W Spekkens · 2008
Cited alongside, same era.
Most quantum states are too entangled to be useful as computational resources
David Gross, Steve T Flammia, and Jens Eisert · 2009
Cited alongside, same era.
Computational power of correlations
Janet Anders and Dan E Browne · 2009
Cited alongside, same era.
Simulating quantum computers with probabilistic methods
Maarten Van den Nest · 2011
Cited alongside, same era.
The sheaf-theoretic structure of non-locality and contextuality
Samson Abramsky and Adam Brandenburger · 2011
Cited alongside, same era.
Graph-theoretic approach to quantum correlations
Adán Cabello, Simone Severini, and Andreas Winter · 2014
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A combinatorial approach to nonlocality and contextuality
Antonio Acín, Tobias Fritz, Anthony Leverrier, and Ana Belén Sainz · 2015
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Wigner function negativity and contextuality in quantum computation on rebits
Nicolas Delfosse, Philippe Allard Guerin, Jacob Bian, and Robert Raussendorf · 2015
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Contextuality as a resource for qubit quantum computation
Robert Raussendorf, Dan E Browne, Nicolas Delfosse, Cihan Okay, and Juan Bermejo-Vega · 2015
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