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Revealing non-classicality of inaccessible objects

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arxiv 1607.01140 v2 pith:MDFQ5YH3 submitted 2016-07-05 quant-ph

Revealing non-classicality of inaccessible objects

classification quant-ph
keywords inaccessiblenon-classicalityobjectsprobesdynamicsobjectopenschemes
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Some physical objects are hardly accessible to direct experimentation. It is then desirable to infer their properties based solely on the interactions they have with systems over which we have control. In this spirit, here we introduce schemes for assessing the non-classicality of the inaccessible objects as characterised by quantum discord. We consider two probes individually interacting with the inaccessible object, but not with each other. The schemes are based on monitoring entanglement dynamics between the probes. Our method is robust and experimentally friendly as it allows the probes and the object to be open systems, makes no assumptions about the initial state, dimensionality of involved Hilbert spaces and details of the probe-object Hamiltonian. We apply our scheme to a membrane-in-the-middle optomechanical system, to detect system-environment correlations in open system dynamics as well as non-classicality of the environment, and we foresee potential benefits for the inference of the non-classical nature of gravity.

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  1. Classical theories of gravity produce entanglement

    quant-ph 2025-10 conditional novelty 7.0

    In quantum field theory, a classical gravitational potential can entangle two superposed masses through virtual matter exchange, so gravitationally induced entanglement is not by itself proof of quantum gravity.