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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Control of the inversionless gain and refractive index in a V-type atom via squeezed vacuum and quantum interference
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Control of the inversionless gain and refractive index in a V-type atom via squeezed vacuum and quantum interference

机译:通过压缩真空和量子干涉控制V型原子的无反转增益和折射率

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摘要

In this paper we analyze the steady-state populations and gain lineshape of a V-type three-level atom with a closely spaced excited doublet. The atom is driven by a strong coherent field, a weak probe, and a single broadband squeezed vacuum. We focus our attention in the interplay between the quantum interference and the squeezed field on the probe gain. It is shown that the relative phases between the two coherent fields and the squeezed field play an important role in the optical properties of the atom. Specifically, we find that the probe can experience gain without population inversion for proper values of the parameters characterizing the squeezed field and in the absence of incoherent pumping. The system can be tailored to exhibit multiple dispersion regimes accompanied by negligible gain or absorption over a large bandwidth, a desirable feature for obtaining propagation of pulses with negligible distortion.
机译:在本文中,我们分析了具有紧密间隔激发双峰的V型三能级原子的稳态种群和增益线形。原子是由强相干场,弱探针和单个宽带压缩真空驱动的。我们将注意力集中在量子增益和探针增益上的压缩场之间的相互作用上。结果表明,两个相干场和压缩场之间的相对相位在原子的光学性质中起着重要的作用。具体而言,我们发现,对于表征压缩场的参数的适当值以及在没有非相干泵浦的情况下,探头可以在没有总体反转的情况下获得增益。可以对该系统进行定制,使其表现出多种色散状态,并在大带宽上具有可忽略的增益或吸收,这是获得具有可忽略的失真的脉冲传播的理想功能。

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