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Contextuality is a signature of operational nonclassicality in the outcome statistics of an experiment.
R. Uola, A. C. S. Costa, H. C. Nguyen, and O. Gühne, Quantum Steering, arXiv:1903.06663
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R. W. Spekkens, D. H. Buzacott, A. J. Keehn, B. Toner, and G. J. Pryde, Preparation Contextuality Powers Parity-Oblivious Multiplexing, Phys. Rev. Lett. 102
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N. Harrigan, and R. W. Spekkens, Einstein, Incompleteness, and the Epistemic View of Quantum States, Found. Phys. 40
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S. J. Jones, and H. M. Wiseman, Nonlocality of a single photon: Paths to an Einstein-Podolsky-Rosen-steering experiment, Phys. Rev. A 84
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A. Chailloux, I. Kerenidis, S. Kundu, and J. Sikora, Optimal bounds for parity-oblivious random access codes, New J. Phys. 18
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A. Tavakoli, B. Marques, M. Pawłowski, and M. Bourennane, Spatial versus sequential correlations for random access coding, Phys. Rev. A 93
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R. Uola, K. Luoma, T. Moroder, and T. Heinosaari, Adaptive strategy for joint measurements, Phys. Rev. A 94
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M. D. Mazurek, M. F. Pusey, R. Kunjwal, K. J. Resch, and R. W. Spekkens, An experimental test of noncontextuality without unphysical idealizations, Nature Communications 7
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T. Heinosaari, and M. Ziman, The Mathematical Language of Quantum Theory
2011
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R. Raussendorf, Contextuality in measurement-based quantum computation, Phys. Rev. A 88
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M. S. Leifer, and O. J. E. Maroney Maximally Epistemic Interpretations of the Quantum State and Contextuality, Phys. Rev. Lett. 110
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N. Brunner, D. Cavalcanti, S. Pironio, V. Scarani, and S. Wehner, Bell nonlocality, Rev. Mod. Phys. 86
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M. Howard, J. Wallman, V. Veitch, and J. Emerson, Contextuality supplies the ’magic’ for quantum computation, Nature volume 510
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M. F. Pusey, Anomalous Weak Values Are Proofs of Contextuality, Phys. Rev. Lett. 113
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M. T. Quintino, T. Vértesi, and N. Brunner, Joint Measurability, Einstein-Podolsky-Rosen Steering, and Bell Nonlocality, Phys. Rev. Lett. 113
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D. Cavalcanti, and P. Skrzypczyk, Quantum steering: a review with focus on semidefinite programming, Rep. Prog. Phys. 80
2017
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J. Bermejo-Vega, N. Delfosse, D. E. Browne, C. Okay, and R. Raussendorf, Contextuality as a Resource for Models of Quantum Computation with Qubits, Phys. Rev. Lett. 119
2017
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A. Hameedi, A. Tavakoli, B. Marques, and M. Bourennane, Communication Games Reveal Preparation Contextuality, Phys. Rev. Lett. 119
2017
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J. Bavaresco, M. T. Quintino, L. Guerini, T. O. Maciel, D. Cavalcanti, and M. T. Cunha, Most incompatible measurements for robust steering tests, Phys. Rev. A 96
2017
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E. Bene, and T. Vértesi, Measurement incompatibility does not give rise to Bell violation in general, New J. Phys. 20
2018
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F. Hirsch, M. T. Quintino, and N. Brunner, Quantum measurement incompatibility does not imply Bell nonlocality, Phys. Rev. A 97
2018
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D. Schmid, and R. W. Spekkens, Contextual Advantage for State Discrimination, Phys. Rev. X 8
2018
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M. F. Pusey, Robust preparation noncontextuality inequalities in the simplest scenario, Phys. Rev. A 98
2018
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P. Skrzypczyk, I. Šupić, and D. Cavalcanti, All Sets of Incompatible Measurements give an Advantage in Quantum State Discrimination, Phys. Rev. Lett. 122
2019
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R. Uola, T. Kraft, J. Shang, X-D. Yu, and O. Gühne, Quantifying Quantum Resources with Conic Programming, Phys. Rev. Lett. 122
2019
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C. Carmeli, T. Heinosaari, and A. Toigo, Quantum Incompatibility Witnesses, Phys. Rev. Lett. 122
2019
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