(Nearly) optimal P-values for all Bell inequalities
arXiv:1510.07233 · doi:10.1038/npjqi.2016.26
Abstract
A key objective in conducting a Bell test is to quantify the statistical evidence against a local-hidden variable model (LHVM) given that we can collect only a finite number of trials in any experiment. The notion of statistical evidence is thereby formulated in the framework of hypothesis testing, where the null hypothesis is that the experiment can be described by an LHVM. The statistical confidence with which the null hypothesis of an LHVM is rejected is quantified by the so-called P-value, where a smaller P-value implies higher confidence. Establishing good statistical evidence is especially challenging if the number of trials is small, or the Bell violation very low. Here, we derive the optimal P-value for a large class of Bell inequalities. What's more, we obtain very sharp upper bounds on the P-value for all Bell inequalities. These values are easily computed from experimental data, and are valid even if we allow arbitrary memory in the devices. Our analysis is able to deal with imperfect random number generators, and event-ready schemes, even if such a scheme can create different kinds of entangled states. Finally, we review requirements for sound data collection, and a method for combining P-values of independent Bell experiments.
Improved exposition
References in corpus (8)
- Experimental loophole-free violation of a Bell inequality using entangled electron spins separated by 1.3 km
- Bell inequality violation with two remote atomic qubits
- Loopholes in Bell Inequality Tests of Local Realism
- Relaxed Bell inequalities and Kochen-Specker theorems
- On Hoeffding's inequalities
- Generation of fresh and pure random numbers for loophole-free Bell tests
- Bell Inequalities for Continuously Emitting Sources
- Analysis of Coincidence-Time Loopholes in Experimental Bell Tests
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