Continuous cavity-QED with an atomic beam

Fuente: arXiv
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Main Authors: Famà, Francesca, Zhou, Sheng, Heizenreder, Benedikt, Tang, Mikkel, Bennetts, Shayne, Jäger, Simon B., Schäffer, Stefan A., Schreck, Florian
Format: Preprint
Published: 2024
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_version_ 1866916665378209792
author Famà, Francesca
Zhou, Sheng
Heizenreder, Benedikt
Tang, Mikkel
Bennetts, Shayne
Jäger, Simon B.
Schäffer, Stefan A.
Schreck, Florian
author_facet Famà, Francesca
Zhou, Sheng
Heizenreder, Benedikt
Tang, Mikkel
Bennetts, Shayne
Jäger, Simon B.
Schäffer, Stefan A.
Schreck, Florian
contents Atoms coupled to cavities provide an exciting playground for the study of fundamental interactions of atoms mediated through a common channel. Many of the applications of cavity-QED and cold-atom experiments more broadly, suffer from limitations caused by the transient nature of an atomic loading cycle. The development of continuous operation schemes is necessary to push these systems to the next level of performance. Here we present a machine designed to produce a continuous flux of collimated atoms that traverse an optical cavity. The atom-light interaction is enhanced by a fast-decaying cavity optimal for studying phenomena where atomic properties dominate. We demonstrate the transition to a collective strong coupling regime heralded by a normal-mode splitting. We observe a second phase with a binary normal-mode splitting born from an offset in the mean velocity of the atoms. Inverting the atomic ensemble in the collective strong coupling regime, we measure continuous optical gain. This work sets the stage for studying threshold conditions for continuous collective phenomena, such as continuous superradiant lasing.
format Preprint
id arxiv_https___arxiv_org_abs_2407_18668
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Continuous cavity-QED with an atomic beam
Famà, Francesca
Zhou, Sheng
Heizenreder, Benedikt
Tang, Mikkel
Bennetts, Shayne
Jäger, Simon B.
Schäffer, Stefan A.
Schreck, Florian
Atomic Physics
Quantum Physics
Atoms coupled to cavities provide an exciting playground for the study of fundamental interactions of atoms mediated through a common channel. Many of the applications of cavity-QED and cold-atom experiments more broadly, suffer from limitations caused by the transient nature of an atomic loading cycle. The development of continuous operation schemes is necessary to push these systems to the next level of performance. Here we present a machine designed to produce a continuous flux of collimated atoms that traverse an optical cavity. The atom-light interaction is enhanced by a fast-decaying cavity optimal for studying phenomena where atomic properties dominate. We demonstrate the transition to a collective strong coupling regime heralded by a normal-mode splitting. We observe a second phase with a binary normal-mode splitting born from an offset in the mean velocity of the atoms. Inverting the atomic ensemble in the collective strong coupling regime, we measure continuous optical gain. This work sets the stage for studying threshold conditions for continuous collective phenomena, such as continuous superradiant lasing.
title Continuous cavity-QED with an atomic beam
topic Atomic Physics
Quantum Physics
url https://arxiv.org/abs/2407.18668