Effects of driven atomic ensemble on the output spectrum and entanglement of optomechanical system

Fuente: arXiv
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Autori principali: Yakup, Burabigul, Ren, Yi-Fang, Bake, Mamat Ali, Turek, Yusuf
Natura: Preprint
Pubblicazione: 2025
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author Yakup, Burabigul
Ren, Yi-Fang
Bake, Mamat Ali
Turek, Yusuf
author_facet Yakup, Burabigul
Ren, Yi-Fang
Bake, Mamat Ali
Turek, Yusuf
contents This paper considers an indirect driving model of a cavity QED system in which the left cavity wall consists of a large ensemble of two-level atoms driven by a classical laser field at a specific resonant frequency, inducing an effective drive for the optomechanical system. We investigate the effects of the atomic ensemble on the output intensity squeezing spectrum and the entanglement between the optical and mechanical modes. Our results show that both the coupling between the atomic ensemble and the cavity mode and the excitation level of the atomic ensemble significantly influences the output spectrum and the entanglement. The theoretical model presented in this paper provides deeper insight into the mechanisms governing correlations and squeezing spectra in conventional optomechanical systems.
format Preprint
id arxiv_https___arxiv_org_abs_2503_16130
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Effects of driven atomic ensemble on the output spectrum and entanglement of optomechanical system
Yakup, Burabigul
Ren, Yi-Fang
Bake, Mamat Ali
Turek, Yusuf
Quantum Physics
This paper considers an indirect driving model of a cavity QED system in which the left cavity wall consists of a large ensemble of two-level atoms driven by a classical laser field at a specific resonant frequency, inducing an effective drive for the optomechanical system. We investigate the effects of the atomic ensemble on the output intensity squeezing spectrum and the entanglement between the optical and mechanical modes. Our results show that both the coupling between the atomic ensemble and the cavity mode and the excitation level of the atomic ensemble significantly influences the output spectrum and the entanglement. The theoretical model presented in this paper provides deeper insight into the mechanisms governing correlations and squeezing spectra in conventional optomechanical systems.
title Effects of driven atomic ensemble on the output spectrum and entanglement of optomechanical system
topic Quantum Physics
url https://arxiv.org/abs/2503.16130