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首页> 外文期刊>Annals of Physics >Controllable generation of photons and phonons in a coupled Bose-Einstein condensate-optomechanical cavity via the parametric dynamical Casimir effect
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Controllable generation of photons and phonons in a coupled Bose-Einstein condensate-optomechanical cavity via the parametric dynamical Casimir effect

机译:通过参数动态Casimir效应,耦合的Bose-Einstein冷凝物 - 光学机械腔中的光子和声子的可控产生

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摘要

We theoretically propose and investigate a feasible experimental scheme for the realization of the dynamical Casimir effect (DCE) in a hybrid optomechanical cavity with a moving end mirror containing an interacting cigar-shaped Bose-Einstein condensate (BEC). We show that in the red-detuned regime of cavity optomechanics together with the weak optomechanical coupling limit by coherent modulation of the s-wave scattering frequency of the BEC and the mechanical spring coefficient of the mechanical oscillator (MO), the mechanical and atomic quantum vacuum fluctuations are parametrically amplified, which consequently lead to the generation of the mechanical/Bogoliubov-type Casimir phonons. Interestingly, in the coherent regime corresponding to the case of largely different optomechanical coupling strengths of the cavity field to the BEC and the MO, or equivalently largely different cooperativities, one can generate a large number of Casimir photons due to the amplification of the intracavity vacuum fluctuations induced by the time modulations of the BEC and the MO. The number of generated Casimir particles are externally controllable by the cooperativities, and the modulation amplitudes of the atomic collisions rate and the mechanical spring coefficient. (C) 2018 Elsevier Inc. All rights reserved.
机译:理论上,我们提出并研究了一种可行的实验方案,用于实现混合体机械腔中的动态Casimir效应(DCE),其具有含有相互作用的雪茄型Bose-Einstein冷凝物(BEC)的移动端镜。我们认为,在腔光机械力学的红松制度中,通过相干调制与BEC的S波散射频率的相干调制以及机械振荡器(MO),机械和原子量子的机械弹簧系数的弱光机械耦合限制真空波动是参数放大,从而导致机械/ Bogoliubov型Casimir声子的产生。有趣的是,在对应于腔场的腔场的壳体的相干方案对BEC和Mo的情况下对应的情况,或者等效地不同的合作率,由于腔内真空的放大,因此可以产生大量的Casimir光子BEC和MO的时间调制引起的波动。产生的Casimir颗粒的数量由协作,以及原子碰撞速率的调制幅度和机械弹簧系数的调制幅度。 (c)2018年Elsevier Inc.保留所有权利。

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