Limited measurement dependence in multiple runs of a Bell test
arXiv:1304.4904 · doi:10.1103/PhysRevA.88.032110
Abstract
The assumption of free will - the ability of an experimentalist to make random choices - is central to proving the indeterminism of quantum resources, the primary tool in quantum cryptography. Relaxing the assumption in a Bell test allows violation of the usual classical threshold by correlating the random number generators used to select measurements with the devices that perform them. In this paper, we examine not only these correlations, but those across multiple runs of the experiment. This enables an explicit exposition of the optimal cheating strategy and how the correlations manifest themselves within this strategy. Similar to other recent results, we prove that there remain Bell violations for a sufficiently high, yet non-maximal degree of free will which cannot be simulated by a classical attack, regardless of how many runs of the experiment those choices are correlated over.
8 pages, 3 figures. Version 2 reflects the published paper in Physical Review A, which among some minor additions/changes now includes Section V discussing the numerical approach to Bell inequalities other than CHSH
References in corpus (5)
- Secure device-independent quantum key distribution with causally independent measurement devices
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- Relaxed Bell inequalities and Kochen-Specker theorems
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Cited by in corpus (11)
- Quantum random number generation
- Robust Device-Independent Randomness Amplification with Few Devices
- Relaxed Bell Inequalities with Arbitrary Measurement Dependence for Each Observer
- (Nearly) optimal P-values for all Bell inequalities
- Measurement-dependent locality beyond i.i.d
- Randomness Requirement on CHSH Bell Test in the Multiple Run Scenario
- Robust Device Independent Randomness Amplification
- Clauser-Horne Bell test with imperfect random inputs
- Experimental test of measurement dependent local Bell inequality with human free will
- Tight Bound on Randomness for Violating the CHSH Inequality
- Interplay between Quantumness, Randomness, and Selftesting