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Bell's theorem is typically understood as the proof that quantum theory is incompatible with local-hidden-variable models.
J. S. Bell, “On the Einstein Podolsky Rosen paradox,”
1964
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J. F. Clauser, M. A. Horne, A. Shimony, and R. A. Holt, “Proposed experiment to test local hidden-variable theories,”
1969
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J. P. Jarrett, “On the physical significance of the locality conditions in the Bell arguments,”
1984
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J. S. Bell, A. Shimony, M. A. Horne, and J. F. Clauser, “An exchange on local beables,”
1985
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H. P. Williams, “Fourier’s method of linear programming and its dual,”
1986
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C. H. Brans, “Bell’s theorem does not eliminate fully causal hidden variables,”
1988
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N. D. Mermin, “Extreme quantum entanglement in a superposition of macroscopically distinct states,”
1990
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H. Reichenbach, The direction of time , Vol. 65 (Univ of California Press, 1991)
1991
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T. Maudlin, “Bell’s inequality, information transmission, and prism models,”
1992
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M. Ardehali, “Bell inequalities with a magnitude of violation that grows exponentially with the number of particles,”
1992
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A. Belinskiui and D. N. Klyshko, “Interference of light and Bell’s theorem,”
1993
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M. Zukowski, A. Zeilinger, M. A. Horne, and A. K. Ekert, “Event-ready-detectors Bell experiment via entanglement swapping.”
1993
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S. Popescu and D. Rohrlich, “Quantum nonlocality as an axiom,”
1994
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A. Balke and J. Pearl, “Bounds on treatment effects from studies with imperfect compliance,”
1997
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G. Brassard, R. Cleve, and A. Tapp, “Cost of Exactly Simulating Quantum Entanglement with Classical Communication,”
1999
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M. Steiner, “Towards quantifying non-local information transfer: finite-bit non-locality,”
2000
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D. Collins, N. Gisin, N. Linden, S. Massar, and S. Popescu, “Bell inequalities for arbitrarily high-dimensional systems,”
2002
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B. F. Toner and D. Bacon, “Communication Cost of Simulating Bell Correlations,”
2003
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A. A. Fedotov, P. Harremoes, and F. Topsoe, “Refinements of Pinsker’s inequality,”
2003
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J. Kofler, T. Paterek, and i. c. v. Brukner, “Experimenter’s freedom in Bell’s theorem and quantum cryptography,”
2006
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R. W. Yeung, Information theory and network coding (Springer Science & Business Media, 2008)
2008
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M. M. Wolf, D. Perez-Garcia, and C. Fernandez, “Measurements incompatible in quantum theory cannot be measured jointly in any other no-signaling theory,”
2009
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J. Pearl, Causality (Cambridge university press, 2009)
2009
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M. J. Hall, “Local deterministic model of singlet state correlations based on relaxing measurement independence,”
2010
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C. Branciard, N. Gisin, and S. Pironio, “Characterizing the nonlocal correlations created via entanglement swapping,”
2010
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J. Barrett and N. Gisin, “How much measurement independence is needed to demonstrate nonlocality,”
2011
Cited alongside, same era.
M. J. Hall, “Relaxed Bell inequalities and Kochen-Specker theorems,”
2011
Cited alongside, same era.
T. Maudlin, Quantum non-locality and relativity: Metaphysical intimations of modern physics (John Wiley & Sons, 2011)
2011
Cited alongside, same era.
D. E. Koh, M. J. W. Hall, Setiawan, J. E. Pope, C. Marletto, A. Kay, V. Scarani, and A. Ekert, “Effects of Reduced Measurement Independence on Bell-Based Randomness Expansion,”
2012
Cited alongside, same era.
M. Banik, M. R. Gazi, S. Das, A. Rai, and S. Kunkri, “Optimal free will on one side in reproducing the singlet correlation,”
2012
Cited alongside, same era.
J. Handsteiner, A. S. Friedman, D. Rauch, J. Gallicchio, B. Liu, H. Hosp, J. Kofler, D. Bricher, M. Fink, C. Leung, et al. , “Cosmic Bell test measurement settings from Milky Way stars,”
2017
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M. Ringbauer and R. Chaves, “Probing the non-classicality of temporal correlations,”
2017
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J. B. Brask and R. Chaves, “Bell scenarios with communication,”
2017
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F. Andreoli, G. Carvacho, L. Santodonato, R. Chaves, and F. Sciarrino, “Maximal qubit violation of n-locality inequalities in a star-shaped quantum network,”
2017
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G. Carvacho, F. Andreoli, L. Santodonato, M. Bentivegna, R. Chaves, and F. Sciarrino, “Experimental violation of local causality in a quantum network,”
2017
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R. Colbeck and R. Renner, “Free randomness can be amplified,”
2012
Cited alongside, same era.
C. Branciard, D. Rosset, N. Gisin, and S. Pironio, “Bilocal versus nonbilocal correlations in entanglement-swapping experiments,”
2012
Cited alongside, same era.
T. Fritz, “Beyond Bell’s theorem: correlation scenarios,”
2012
Cited alongside, same era.
T. Fritz and R. Chaves, “Entropic inequalities and marginal problems,”
2012
Cited alongside, same era.
J. Gallicchio, A. S. Friedman, and D. I. Kaiser, “Testing Bell’s inequality with cosmic photons Closing the setting-independence loophole,”
2014
Cited alongside, same era.
G. Putz, D. Rosset, T. J. Barnea, Y.-C. Liang, and N. Gisin, “Arbitrarily small amount of measurement independence is sufficient to manifest quantum nonlocality,”
2014
Cited alongside, same era.
A. Tavakoli, P. Skrzypczyk, D. Cavalcanti, and A. Ac’in, “Nonlocal correlations in the star-network configuration,”
2014
Cited alongside, same era.
BIG Bell Test Collaboration and others, “Challenging local realism with human choices,”
2018
Later among the works it cites.
D. Rauch, J. Handsteiner, A. Hochrainer, J. Gallicchio, A. S. Friedman, C. Leung, B. Liu, L. Bulla, S. Ecker, F. Steinlechner, et al. , “Cosmic Bell test using random measurement settings from high-redshift quasars,”
2018
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R. Chaves, G. Carvacho, I. Agresti, V. Di Giulio, L. Aolita, S. Giacomini, and F. Sciarrino, “Quantum violation of an instrumental test,”
2018
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T. C. Fraser and E. Wolfe, “Causal compatibility inequalities admitting quantum violations in the triangle structure,”
2018
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A. S. Friedman, A. H. Guth, M. J. Hall, D. I. Kaiser, and J. Gallicchio, “Relaxed Bell inequalities with arbitrary measurement dependence for each observer,”
2019
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M.-O. Renou, E. Baumer, S. Boreiri, N. Brunner, N. Gisin, and S. Beigi, “Genuine quantum nonlocality in the triangle network,”
2019
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E. Wolfe, R. W. Spekkens, and T. Fritz, “The Inflation Technique for Causal Inference with Latent Variables,”
2019
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A. Pozas-Kerstjens, R. Rabelo, L. Rudnicki, R. Chaves, D. Cavalcanti, M. Navascu’es, and A. Ac’in, “Bounding the sets of classical and quantum correlations in networks,”
2019
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M. J. Hall and C. Branciard, “Measurement-dependence cost for Bell nonlocality Causal versus retrocausal models,”
2020
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S. Hossenfelder and T. Palmer, “Rethinking superdeterminism,”
2020
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R. D. Gill, “The triangle wave versus the cosine: How classical systems can optimally approximate EPR-B correlations,”
2020
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D. Poderini, I. Agresti, G. Marchese, E. Polino, T. Giordani, A. Suprano, M. Valeri, G. Milani, N. Spagnolo, G. Carvacho, et al. , “Experimental violation of n n -locality in a star quantum network,”
2020
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I. Šupić, J.-D. Bancal, and N. Brunner, “Quantum Nonlocality in Networks Can Be Demonstrated with an Arbitrarily Small Level of Independence between the Sources,”
2020
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A. Kela, K. Von Prillwitz, J. Åberg, R. Chaves, and D. Gross, “Semidefinite tests for latent causal structures,”
2020
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J. Åberg, R. Nery, C. Duarte, and R. Chaves, “Semidefinite tests for quantum network topologies,”
2020
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D. Kédagni and I. Mourifié, “Generalized instrumental inequalities testing the instrumental variable independence assumption,”
2020
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P. Blasiak, E. M. Pothos, J. M. Yearsley, C. Gallus, and E. Borsuk, “Violations of locality and free choice are equivalent resources in Bell experiments,”
2021
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