Fundamental limit to cavity linewidth narrowing with single atoms

Fuente: arXiv
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Main Authors: Santos, Lucas R. S., Oliveira, Murilo H., Solak, Luiz O. R., Rossatto, Daniel Z., Villas-Boas, Celso J.
Format: Preprint
Published: 2024
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_version_ 1866913581095714816
author Santos, Lucas R. S.
Oliveira, Murilo H.
Solak, Luiz O. R.
Rossatto, Daniel Z.
Villas-Boas, Celso J.
author_facet Santos, Lucas R. S.
Oliveira, Murilo H.
Solak, Luiz O. R.
Rossatto, Daniel Z.
Villas-Boas, Celso J.
contents The electromagnetically induced transparency (EIT) is a quantum interference phenomenon capable of altering the optical response of a medium, turning an initially opaque atomic sample into transparent for a given radiation field (probe field) upon the incidence of a second one (control field). EIT presents several applications, for instance, considering an atomic system trapped inside an optical cavity, its linewidth can be altered by adjusting the control field strength. For the single-atom regime, we show that there is a fundamental limit for narrowing the cavity linewidth, since quantum fluctuations cannot be disregarded in this regime. With this in mind, in this work we also investigate how the linewidth of an optical cavity behaves for different numbers of atoms trapped inside it, which shows a quantum signature in a strong atom-field coupling regime. In addition, we examine how the other system parameters affect the linewidth, such as the Rabi frequency of the control and the probe fields.
format Preprint
id arxiv_https___arxiv_org_abs_2411_12422
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Fundamental limit to cavity linewidth narrowing with single atoms
Santos, Lucas R. S.
Oliveira, Murilo H.
Solak, Luiz O. R.
Rossatto, Daniel Z.
Villas-Boas, Celso J.
Quantum Physics
The electromagnetically induced transparency (EIT) is a quantum interference phenomenon capable of altering the optical response of a medium, turning an initially opaque atomic sample into transparent for a given radiation field (probe field) upon the incidence of a second one (control field). EIT presents several applications, for instance, considering an atomic system trapped inside an optical cavity, its linewidth can be altered by adjusting the control field strength. For the single-atom regime, we show that there is a fundamental limit for narrowing the cavity linewidth, since quantum fluctuations cannot be disregarded in this regime. With this in mind, in this work we also investigate how the linewidth of an optical cavity behaves for different numbers of atoms trapped inside it, which shows a quantum signature in a strong atom-field coupling regime. In addition, we examine how the other system parameters affect the linewidth, such as the Rabi frequency of the control and the probe fields.
title Fundamental limit to cavity linewidth narrowing with single atoms
topic Quantum Physics
url https://arxiv.org/abs/2411.12422