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Bell's Theorem for Temporal Order

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arxiv 1708.00248 v3 pith:MBVI2BNI submitted 2017-08-01 quant-ph gr-qc

classification quant-phgr-qc
keywords ordertemporalquantumbellclassicaldescriptiondistributionentanglement
verification ladder T0 review T1 audit T2 compute T3 formal
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Time has a fundamentally different character in quantum mechanics and in general relativity. In quantum theory events unfold in a fixed time order while in general relativity temporal order is influenced by the distribution of matter. When the distribution of matter requires a quantum description, temporal order is expected to become non-classical -- a scenario beyond the scope of current theories. Here we provide a direct description of such a scenario. We consider a massive body in a spatial superposition and show how it leads to "entanglement" of temporal orders between time-like events in the resulting space-time. This entanglement enables accomplishing a task, violation of a Bell inequality, that is impossible under classical temporal order. Violation of the inequality means that temporal order becomes non-classical -- it cannot be described by locally defined classical variables. Our approach provides a quantitative method for investigating quantum aspects of space-time and gravity.

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Cited by 3 Pith papers

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    In indefinite-causal-order quantum theory, an observer is a perspective-dependent grouping of input/output data, with a new 'friendliness' criterion for causally compatible agents.

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