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Hauptverfasser: Impens, François, Souza, Reinaldo de Melo e, Matos, Guilherme C., Neto, Paulo A. Maia
Format: Preprint
Veröffentlicht: 2022
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Online-Zugang:https://arxiv.org/abs/2203.16387
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author Impens, François
Souza, Reinaldo de Melo e
Matos, Guilherme C.
Neto, Paulo A. Maia
author_facet Impens, François
Souza, Reinaldo de Melo e
Matos, Guilherme C.
Neto, Paulo A. Maia
contents The coupling between a moving ground-state atom and the quantum electromagnetic field is at the origin of several intriguing phenomena ranging from the dynamical Casimir emission of photons to Sagnac-like geometric phase shifts in atom interferometers. Recent progress in this emerging field reveals unprecedented connections between non-trivial aspects of modern physics such as electrodynamic retardation, non-unitary evolution in open quantum systems, geometric phases, non-locality and inertia.
format Preprint
id arxiv_https___arxiv_org_abs_2203_16387
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Dynamical Casimir effects with atoms: from the emission of photon pairs to geometric phases
Impens, François
Souza, Reinaldo de Melo e
Matos, Guilherme C.
Neto, Paulo A. Maia
Quantum Physics
Atomic Physics
The coupling between a moving ground-state atom and the quantum electromagnetic field is at the origin of several intriguing phenomena ranging from the dynamical Casimir emission of photons to Sagnac-like geometric phase shifts in atom interferometers. Recent progress in this emerging field reveals unprecedented connections between non-trivial aspects of modern physics such as electrodynamic retardation, non-unitary evolution in open quantum systems, geometric phases, non-locality and inertia.
title Dynamical Casimir effects with atoms: from the emission of photon pairs to geometric phases
topic Quantum Physics
Atomic Physics
url https://arxiv.org/abs/2203.16387