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Minimum Detection Efficiencies for a Loophole-Free Bell-type Test

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arxiv 0912.2258 v1 pith:2XSU2V5S submitted 2009-12-11 quant-ph hep-ph

classification quant-phhep-ph
keywords detectiontestinequalityefficiencyentangledlocalloopholeloophole-free
verification ladder T0 review T1 audit T2 compute T3 formal
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We discuss the problem of finding the most favorable conditions for closing the detection loophole in a test of local realism with a Bell inequality. For a generic non-maximally entangled two-qubit state and two alternative measurement bases we apply Hardy's proof of non-locality without inequality and derive an Eberhard-like inequality. For an infinity of non-maximally entangled states we find that it is possible to refute local realism by requiring perfect detection efficiency for only one of the two measurements: the test is free from the detection loophole for any value of the detection efficiency corresponding to the other measurement. The maximum tolerable noise in a loophole-free test is also evaluated.

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