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Testing Whether Gravity Acts as a Quantum Entity When Measured

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arxiv 2307.08133 v5 pith:RBAMSKXQ submitted 2023-07-16 gr-qc quant-ph

classification gr-qcquant-ph
keywords gravityquantumdisturbancefieldgravitationalmeasurementprincipleproposed
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A defining signature of classical systems is "in principle measurability" without disturbance: a feature manifestly violated by quantum systems. We describe a multi-interferometer experimental setup that can, in principle, reveal the nonclassicality of a spatial superposition-sourced gravitational field if an irreducible disturbance is caused by a measurement of gravity. While one interferometer sources the field, the others are used to measure the gravitational field created by the superposition. This requires neither any specific form of nonclassical gravity, nor the generation of entanglement between any relevant degrees of freedom at any stage, thus distinguishing it from the experiments proposed so far. This test, when added to the recent entanglement-witness based proposals, enlarges the domain of quantum postulates being tested for gravity. Moreover, the proposed test yields a signature of quantum measurement induced disturbance for any finite rate of decoherence, and is device independent.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Destructive Interference of Inertial Noise in Matter-wave Interferometry

    quant-ph 2025-06 conditional novelty 6.0 of 10

    A theory shows that cross-correlated two-dimensional vibration noise in a matter-wave interferometer can be tuned to suppress dephasing by roughly the Q-factor of the noise.

  2. Manifestation of quantum entanglement between harmonic oscillators in de Sitter

    gr-qc 2025-06 reject novelty 6.0 of 10

    In de Sitter space, two harmonic oscillators coupled by a massless scalar field develop late-time entanglement that is sizeable when frequency and separation are near the Hubble scale, and tiny otherwise.

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