General Relativistic Center-of-Mass Coordinates for Composite Quantum Particles

Fuente: arXiv
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Autori principali: Janson, Gregor, Lopp, Richard
Natura: Preprint
Pubblicazione: 2024
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author Janson, Gregor
Lopp, Richard
author_facet Janson, Gregor
Lopp, Richard
contents Recent proposals suggested quantum clock interferometry for tests of the Einstein equivalence principle. However, atom interferometric models often include relativistic effects only in an ad hoc fashion. Here, instead, we start from the multi-particle nature of quantum-delocalizable atoms in curved spacetime and generalize the special-relativistic center of mass (COM) and relative coordinates that have previously been studied for Minkowski spacetime to obtain the light-matter dynamics in curved spacetime. In particular, for a local Schwarzschild observer located at the surface of the Earth using Fermi-Walker coordinates, we find gravitational correction terms for the Poincaré symmetry generators and use them to derive general relativistic COM and relative coordinates. In these coordinates we obtain the Hamiltonian of a fully first-quantized two-particle atom interacting with the electromagnetic field in curved spacetime that naturally incorporates special and general relativistic effects.
format Preprint
id arxiv_https___arxiv_org_abs_2411_14307
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle General Relativistic Center-of-Mass Coordinates for Composite Quantum Particles
Janson, Gregor
Lopp, Richard
General Relativity and Quantum Cosmology
Quantum Physics
Recent proposals suggested quantum clock interferometry for tests of the Einstein equivalence principle. However, atom interferometric models often include relativistic effects only in an ad hoc fashion. Here, instead, we start from the multi-particle nature of quantum-delocalizable atoms in curved spacetime and generalize the special-relativistic center of mass (COM) and relative coordinates that have previously been studied for Minkowski spacetime to obtain the light-matter dynamics in curved spacetime. In particular, for a local Schwarzschild observer located at the surface of the Earth using Fermi-Walker coordinates, we find gravitational correction terms for the Poincaré symmetry generators and use them to derive general relativistic COM and relative coordinates. In these coordinates we obtain the Hamiltonian of a fully first-quantized two-particle atom interacting with the electromagnetic field in curved spacetime that naturally incorporates special and general relativistic effects.
title General Relativistic Center-of-Mass Coordinates for Composite Quantum Particles
topic General Relativity and Quantum Cosmology
Quantum Physics
url https://arxiv.org/abs/2411.14307