Study on Mechanical Squeezing and Entanglement of Hybrid Atom-Optomechanical Systems
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O413.2

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    Abstract:

    In a typical optomechanical system, the decay rate of an optical cavity must be smaller than the frequency of a mechanical oscillator(resolved sideband regime) in order to generate strong mechanical squeezing generally. This is difficult to implement in experiments. A scheme is proposed to generate strong mechanical squeezing and steady state entanglement in a hybrid atom-optomechanical system in the highly unresolved sideband regime (the decay rate of the optical cavity is much larger than the frequency of the mechanical oscillator). Two two-level atomic ensembles and two lasers with different amplitudes can be used to control the optomechanical system and the resolved sideband limit can be relaxed. Our results are as follows: if two atomic ensembles are put into the optomechanical system, the strong mechanical squeezing beyond 3 dB is achieved even in the highly unresolved sideband regime; the steady state entanglement between the cavity and mechanical resonator can also be obtained.

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王鑫,阳松林,李昂,张建松.原子-光力混合系统的机械压缩和纠缠研究[J].华东交通大学学报英文版,2023,40(2):112-117.
Wang Xin, Yang Songlin, Li Ang, Zhang Jiansong. Study on Mechanical Squeezing and Entanglement of Hybrid Atom-Optomechanical Systems[J]. JOURNAL OF EAST CHINA JIAOTONG UNIVERSTTY,2023,40(2):112-117

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History
  • Received:April 11,2022
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  • Online: May 06,2023
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