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Classical Channel Gravity in the Newtonian Limit

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arxiv 1812.03118 v1 pith:RLX6XAVY submitted 2018-12-07 quant-ph

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keywords modelclassicalgravityquantumchannellimitmacroscopicmass
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We present a minimal model for the quantum evolution of matter under the influence of classical gravity in the Newtonian limit. Based on a continuous measurement-feedback channel that acts simultaneously on all constituent masses of a given quantum system, the model scales and applies consistently to arbitrary mass densities, and it recovers the classical Newton force between macroscopic masses. The concomitant loss of coherence is set by a model parameter, does not depend on mass, and can thus be confined to unobservable time scales for micro- and macroscopic systems alike. The model can be probed in high-precision matter-wave interferometry, and ultimately tested in recently proposed optomechanical quantum gravity experiments.

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  1. Nanomechanical test of quantum linearity

    quant-ph 2019-09 conditional novelty 7.0 of 10

    A proposed high-frequency nanomechanical phonon-counting experiment could test spontaneous collapse models down to a collapse rate of 1e-12 per second, covering both Adler's and Bassi et al.'s predicted bounds.

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