Membrane-in-the-middle optomechanical system and structural frequencies

Fuente: arXiv
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Autori principali: Lara, Luis Pedro, Weder, Ricardo, Castaños-Cervantes, Luis Octavio
Natura: Preprint
Pubblicazione: 2023
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author Lara, Luis Pedro
Weder, Ricardo
Castaños-Cervantes, Luis Octavio
author_facet Lara, Luis Pedro
Weder, Ricardo
Castaños-Cervantes, Luis Octavio
contents We consider a one-dimensional membrane-in-the-middle model for a cavity that consists of two fixed, perfect mirrors and a mobile dielectric membrane between them that has a constant electric susceptibility. We present a sequence of exact cavity angular frequencies that we call structural angular frequencies and that have the remarkable property that they are independent of the position of the membrane inside the cavity. Furthermore, the case of a thin membrane is considered and simple, approximate formulae for the angular frequencies and for the modes of the cavity are obtained. Finally, the cavity electromagnetic potential is numerically calculated and it is found that the potential is accurately described by a multiple scales solution.
format Preprint
id arxiv_https___arxiv_org_abs_2312_09127
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Membrane-in-the-middle optomechanical system and structural frequencies
Lara, Luis Pedro
Weder, Ricardo
Castaños-Cervantes, Luis Octavio
Quantum Physics
Applied Physics
Atomic Physics
Optics
We consider a one-dimensional membrane-in-the-middle model for a cavity that consists of two fixed, perfect mirrors and a mobile dielectric membrane between them that has a constant electric susceptibility. We present a sequence of exact cavity angular frequencies that we call structural angular frequencies and that have the remarkable property that they are independent of the position of the membrane inside the cavity. Furthermore, the case of a thin membrane is considered and simple, approximate formulae for the angular frequencies and for the modes of the cavity are obtained. Finally, the cavity electromagnetic potential is numerically calculated and it is found that the potential is accurately described by a multiple scales solution.
title Membrane-in-the-middle optomechanical system and structural frequencies
topic Quantum Physics
Applied Physics
Atomic Physics
Optics
url https://arxiv.org/abs/2312.09127