Optimal free-will on one side in reproducing the singlet correlation
arXiv:1204.3835 · doi:10.1088/1751-8113/45/20/205301
Abstract
Bell's theorem teaches us that there are quantum correlations that can not be simulated by just shared randomness (Local Hidden variable). There are some recent results which simulate singlet correlation by using either 1 cbit or a binary (no-signaling) correlation which violate Bell's inequality maximally. But there is one more possible way to simulate quantum correlation by relaxing the condition of independency of measurement on shared randomness. Recently, MJW Hall showed that the statistics of singlet state can be generated by sacrificing measurement independence where underlying distribution of hidden variables depend on measurement direction of both parties [Phys. Rev. Lett.105 250404 (2010)]. He also proved that for any model of singlet correlation, 86% measurement independence is optimal. In this paper, we show that 59% measurement independence is optimal for simulating singlet correlation when the underlying distribution of hidden variables depend only on measurements of one party. We also show that a distribution corresponding to this optimal lack of free will, already exists in literature which first appeared in the context of detection efficiency loophole.
7 pages (single column), accepted in J. Phys. A: Math. Theor
References in corpus (4)
Cited by in corpus (17)
- Cosmic Bell Test: Measurement Settings from Milky Way Stars
- Cosmic Bell Test using Random Measurement Settings from High-Redshift Quasars
- Relaxed Bell Inequalities with Arbitrary Measurement Dependence for Each Observer
- Measurement-dependence cost for Bell nonlocality: causal vs retrocausal models
- Astronomical random numbers for quantum foundations experiments
- Lack of measurement independence can simulate quantum correlation even when signaling cannot
- No-Go Theorems Face Background-based Theories for Quantum Mechanics
- Local simulation of singlet statistics for restricted set of measurement
- Tackling Loopholes in Experimental Tests of Bell's Inequality
- Relaxed Bell inequalities as a trade-off relation between measurement dependence and hiddenness
- Quantum nonlocality in presence of strong measurement dependence
- Testing of quantum nonlocal correlations under constrained free will and imperfect detectors
- Bell Nonlocality and the Reality of Quantum Wavefunction
- Causal Networks and Freedom of Choice in Bell's Theorem
- One Sided indeterminism alone is not a useful resource to simulate any nonlocal correlation
- Local deterministic simulation of equatorial Von Neumann measurements on tripartite GHZ state
- Trade-off relations between measurement dependence and hidden information for factorizable hidden variable models