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Article Dans Une Revue Physical Review Letters Année : 2014

How ψ-epistemic models fail at explaining the indistinguishability of quantum states

Résumé

We study the extent to which ψ-epistemic models for quantum measurement statistics—models where the quantum state does not have a real, ontic status—can explain the indistinguishability of nonorthogonal quantum states. This is done by comparing the overlap of any two quantum states with the overlap of the corresponding classical probability distributions over ontic states in a ψ-epistemic model. It is shown that in Hilbert spaces of dimension d ≥ 4, the ratio between the classical and quantum overlaps in any ψ-epistemic model must be arbitrarily small for certain nonorthogonal states, suggesting that such models are arbitrarily bad at explaining the indistinguishability of quantum states. For dimensions d = 3 and 4, we construct explicit states and measurements that can be used experimentally to put stringent bounds on the ratio of classical-to-quantum overlaps in ψ-epistemic models, allowing one in particular to rule out maximally ψ-epistemic models more efficiently than previously proposed.
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Dates et versions

hal-01091208 , version 1 (04-12-2014)

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Cyril Branciard. How ψ-epistemic models fail at explaining the indistinguishability of quantum states. Physical Review Letters, 2014, Physical Review Letters, 2 (113), pp.020409. ⟨10.1103/PhysRevLett.113.020409⟩. ⟨hal-01091208⟩

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