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Gravitational Decoherence: A Thematic Overview

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arxiv 2111.02462 v1 pith:NYBJPTTD submitted 2021-11-03 gr-qc hep-thquant-ph

classification gr-qchep-thquant-ph
keywords quantumtheoriesdecoherencefundamentalgravitationalgravityoverviewtheoretical
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Gravitational decoherence (GD) refers to the effects of gravity in actuating the classical appearance of a quantum system. Because the underlying processes involve issues in general relativity (GR), quantum field theory (QFT) and quantum information, GD has fundamental theoretical significance. There is a great variety of GD models, many of them involving physics that diverge from GR and/or QFT. This overview has two specific goals along one central theme: (i) present theories of GD based on GR and QFT and explore their experimental predictions; (ii) place other theories of GD under the scrutiny of GR and QFT, and point out their theoretical differences. We also describe how GD experiments in space in the coming decades can provide evidences at two levels: a) discriminate alternative quantum theories and non-GR theories; b) discern whether gravity is a fundamental or an effective theory.

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    A quantum superposition held at the center of de Sitter spacetime decoheres at constant rates proportional to the two-point correlation functions of scalar, electromagnetic, and gravitational fields near the cosmologi...

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