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Starting from arbitrary sets of quantum states and measurements, referred to as the prepare-and-measure scenario, an operationally noncontextual ontological model of the quantum statistics associated with the prepare-and-measure scenario is constructed.
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“A structure theorem for generalized-noncontextual ontological models” (2020)
David Schmid, John H. Selby, Matthew F. Pusey, and Robert W. Spekkens · 2005
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“Negativity and contextuality are equivalent notions of nonclassicality”
Robert W. Spekkens · 2008
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“Frame representations of quantum mechanics and the necessity of negativity in quasi-probability representations”
Christopher Ferrie and Joseph Emerson · 2008
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Mark Howard, Joel J. Wallman, Victor Veitch, and Joseph Emerson · 2014
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Robert W. Spekkens · 2014
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“Deriving robust noncontextuality inequalities from algebraic proofs of the Kochen-Specker theorem: the Peres-Mermin square”
Anirudh Krishna, Robert W. Spekkens, and Elie Wolfe · 2017
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“An improved semidefinite programming hierarchy for testing entanglement”
Aram W. Harrow, Anand Natarajan, and Xiaodi Wu · 2017
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“Contextual advantage for state discrimination”
David Schmid and Robert W. Spekkens · 2018
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“All the noncontextuality inequalities for arbitrary prepare-and-measure experiments with respect to any fixed set of operational equivalences”
David Schmid, Robert W. Spekkens, and Elie Wolfe · 2018
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“Linear algebra”
M. Thamban Nair and Arindama Singh · 2018
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“Quantum advantage in postselected metrology”
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Peter Janotta and Haye Hinrichsen · 2014
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“Functional analysis”
Joseph Muscat · 2014
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“Contextuality as a resource for models of quantum computation on qubits”
Juan Bermejo-Vega, Nicolas Delfosse, Dan E. Browne, Cihan Okay, and Robert Raussendorf · 2017
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David R. M. Arvidsson-Shukur, Nicole Yunger Halpern, Hugo V. Lepage, Aleksander A. Lasek, Crispin H. W. Barnes, and Seth Lloyd · 2020
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Farid Shahandeh · 2021
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