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The causal structure of any experiment implies restrictions on the observable correlations between measurement outcomes, which are different for experiments exploiting classical, quantum, or post-quantum resources.
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Device-Independent Security of Quantum Cryptography against Collective Attacks
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A convergent hierarchy of semidefinite programs characterizing the set of quantum correlations
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All reversible dynamics in maximally nonlocal theories are trivial
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On the Device-Independent Approach to Quantum Physics , (Springer International Publishing 2014)
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Bounding the Set of Finite Dimensional Quantum Correlations
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Random numbers certified by Bell’s theorem
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How Much Measurement Independence Is Needed to Demonstrate Nonlocality?
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T. Fritz · 2012
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The Device-Independent Outlook on Quantum Physics
V. Scarani · 2012
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Solution Building for Arbitrary System of Linear Inequalities in an Explicit Form
D. V. Shapot and A. M. Lukatskii · 2012
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Randomness versus nonlocality and entanglement
A. Acín, S. Massar, and S. Pironio · 2012
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Fast method for verifying Chernikov rules in Fourier-Motzkin elimination
S. I. Bastrakov and N. Y. Zolotykh · 2015
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Strong Loophole-Free Test of Local Realism
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Significant-Loophole-Free Test of Bell’s Theorem with Entangled Photons
M. Giustina et al · 2015
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Quantum causal modelling
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Minimum Dimension of a Hilbert Space Needed to Generate a Quantum Correlation
J. Sikora, A. Varvitsiotis, and Z. Wei · 2016
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Bell scenarios with communication
J. B. Brask and R. Chaves · 2017
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Quantum common causes and quantum causal models
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Quantum violation of an instrumental test
R. Chaves, G. Carvacho, I. Agresti, V. D. Giulio, L. Aolita, S. Giacomini, and F. Sciarrino · 2018
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Margins of discrete Bayesian networks
R. J. Evans · 2018
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Device-independent randomness generation with sublinear shared quantum resources
C. Bamps, S. Massar, and S. Pironio · 2018
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Simple and tight device-independent security proofs
R. Arnon-Friedman, R. Renner, and T. Vidick · 2019
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