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Contextuality has been conjectured to be a super-classical resource for quantum computation, analogous to the role of non-locality as a super-classical resource for communication.
The problem of hidden variables in quantum mechanics
Simon Kochen and Ernst P Specker · 1975
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Simple unified form for the major no-hidden-variables theorems
N David Mermin · 1990
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Two simple proofs of the kochen-specker theorem
Asher Peres · 1991
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Rapid solution of problems by quantum computation
David Deutsch and Richard Jozsa · 1992
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Universal quantum simulators
Seth Lloyd · 1996
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Improved simulation of stabilizer circuits
Scott Aaronson and Daniel Gottesman · 2004
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Contextuality for preparations, transformations, and unsharp measurements
Robert W Spekkens · 2005
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Representing probabilistic data via ontological models
Nicholas Harrigan, Terry Rudolph, and Scott Aaronson · 2007
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Matchgates and classical simulation of quantum circuits
Richard Jozsa and Akimasa Miyake · 2008
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Computational power of correlations
Janet Anders and Dan E Browne · 2009
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Classical simulation of commuting quantum computations implies collapse of the polynomial hierarchy. Proc. R. Soc. A
Michael J Bremner, Richard Jozsa, and Dan J Shepherd · 2011
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The computational complexity of linear optics
Scott Aaronson and Alex Arkhipov · 2011
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Memory cost of quantum contextuality
Matthias Kleinmann, Otfried Gühne, Jose R Portillo, Jan-Åke Larsson, and Adan Cabello · 2011
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The sheaf-theoretic structure of non-locality and contextuality
Samson Abramsky and Adam Brandenburger · 2011
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Negative quasi-probability as a resource for quantum computation
Victor Veitch, Christopher Ferrie, David Gross, and Joseph Emerson · 2012
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Reconstruction of gaussian quantum mechanics from liouville mechanics with an epistemic restriction
Stephen D Bartlett, Terry Rudolph, and Robert W Spekkens · 2012
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On the reality of the quantum state
Matthew F Pusey, Jonathan Barrett, and Terry Rudolph · 2012
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Classical simulation complexity of extended clifford circuits
No ψ \psi -epistemic model can fully explain the indistinguishability of quantum states
Jonathan Barrett, Eric G Cavalcanti, Raymond Lal, and Owen JE Maroney · 2014
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Further extensions of clifford circuits and their classical simulation complexities
Dax Enshan Koh · 2015
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Estimating outcome probabilities of quantum circuits using quasiprobabilities
Hakop Pashayan, Joel J Wallman, and Stephen D Bartlett · 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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A combinatorial approach to nonlocality and contextuality
Antonio Acín, Tobias Fritz, Anthony Leverrier, and Ana Belén Sainz · 2015
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Richard Jozsa and Maarten Van den Nest · 2013
Cited alongside, same era.
Contextuality in measurement-based quantum computation
Robert Raussendorf · 2013
Cited alongside, same era.
Proofs of the kochen-specker theorem based on the n-qubit pauli group
Mordecai Waegell and PK Aravind · 2013
Cited alongside, same era.
Maximally epistemic interpretations of the quantum state and contextuality
Matthew S Leifer and Owen J E Maroney · 2013
Cited alongside, same era.
Contextuality supplies the ‘magic’for quantum computation
Mark Howard, Joel Wallman, Victor Veitch, and Joseph Emerson · 2014
Cited alongside, same era.
Graph-theoretic approach to quantum correlations
Adán Cabello, Simone Severini, and Andreas Winter · 2014
Cited alongside, same era.
ψ \psi -epistemic models are exponentially bad at explaining the distinguishability of quantum states
Matthew S Leifer · 2014
Cited alongside, same era.
Improved classical simulation of quantum circuits dominated by clifford gates
Sergey Bravyi and David Gosset · 2016
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Contextuality as a resource for models of quantum computation with qubits
Juan Bermejo-Vega, Nicolas Delfosse, Dan E Browne, Cihan Okay, and Robert Raussendorf · 2017
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Contextuality and wigner-function negativity in qubit quantum computation
Robert Raussendorf, Dan E Browne, Nicolas Delfosse, Cihan Okay, and Juan Bermejo-Vega · 2017
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Memory cost for simulating all quantum correlations from the peres–mermin scenario
Gabriel Fagundes and Matthias Kleinmann · 2017
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Topological proofs of contextuality in qunatum mechanics
Cihan Okay, Sam Roberts, Stephen D Bartlett, and Robert Raussendorf · 2017
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From estimation of quantum probabilities to simulation of quantum circuits
Hakop Pashayan, Stephen D Bartlett, and David Gross · 2017
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