Probing the nonclassical dynamics of a quantum particle in a gravitational field

Fuente: arXiv
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Main Authors: Plávala, Martin, Nimmrichter, Stefan, Kleinmann, Matthias
Format: Preprint
Published: 2025
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author Plávala, Martin
Nimmrichter, Stefan
Kleinmann, Matthias
author_facet Plávala, Martin
Nimmrichter, Stefan
Kleinmann, Matthias
contents In quantum mechanics, the time evolution of particles is given by the Schrödinger equation. It is valid in a nonrelativistic regime where the interactions with the particle can be modelled by a potential and quantised fields are not required. This has been verified in countless experiments when the interaction is of electromagnetic origin, but also corrections due to the quantised field are readily observed. When the interaction is due to gravity, then one cannot expect to see effects of the quantised field in current-technology Earth-bound experiments. However, this does not yet guarantee that in the accessible regime, the time evolution is accurately given by the Schrödinger equation. Here we propose to measure the effects of an asymmetric mass configuration on a quantum particle in an interferometer. For this setup we show that with parameters within experimental reach, one can be sensitive to possible deviations from the Schrödinger equation, beyond the already verified lowest-order regime. Performing this experiment will hence directly test the nonclassical behaviour of a quantum particle in the gravitational field.
format Preprint
id arxiv_https___arxiv_org_abs_2502_03489
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Probing the nonclassical dynamics of a quantum particle in a gravitational field
Plávala, Martin
Nimmrichter, Stefan
Kleinmann, Matthias
Quantum Physics
In quantum mechanics, the time evolution of particles is given by the Schrödinger equation. It is valid in a nonrelativistic regime where the interactions with the particle can be modelled by a potential and quantised fields are not required. This has been verified in countless experiments when the interaction is of electromagnetic origin, but also corrections due to the quantised field are readily observed. When the interaction is due to gravity, then one cannot expect to see effects of the quantised field in current-technology Earth-bound experiments. However, this does not yet guarantee that in the accessible regime, the time evolution is accurately given by the Schrödinger equation. Here we propose to measure the effects of an asymmetric mass configuration on a quantum particle in an interferometer. For this setup we show that with parameters within experimental reach, one can be sensitive to possible deviations from the Schrödinger equation, beyond the already verified lowest-order regime. Performing this experiment will hence directly test the nonclassical behaviour of a quantum particle in the gravitational field.
title Probing the nonclassical dynamics of a quantum particle in a gravitational field
topic Quantum Physics
url https://arxiv.org/abs/2502.03489