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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Superluminal and slow light in Lambda-type three-level atoms via squeezed vacuum and spontaneously generated coherence - art. no. 063805
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Superluminal and slow light in Lambda-type three-level atoms via squeezed vacuum and spontaneously generated coherence - art. no. 063805

机译:Lambda型三能级原子的超光速和慢光通过压缩真空和自发产生的相干性-艺术。没有。 063805

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摘要

We study the dispersion and absorption spectra of a weak probe in a Delta-type three-level atomic system with closely ground sublevels driven by a strong field and damped by a broadband squeezed vacuum. We analyze the interplay between the spontaneous generated coherence and the squeezed field on the susceptibility of the atomic system. We find that by varying the intensity of the squeezed field the group velocity of a weak pulse can change from subluminal to superluminal. In addition we exploit the fact that the properties of the atomic medium can be dramatically modified by controlling the relative phase between the driving field and the squeezed field, allowing us to manipulate the group velocity at which light propagates. The physical origin of this phenomenon corresponds to a transfer of the atomic coherence from electromagnetically induced transparency to electromagnetically induced absorption. Besides, this phenomenon is achieved under nearly transparency conditions and with negligible distortion of the propagation pulse.
机译:我们研究了在三角型原子能级系统中,由强场驱动并受到宽带压缩真空抑制的紧密地下亚能级的弱探针的色散和吸收光谱。我们分析了原子系统的磁化率的自发产生的相干性和压缩场之间的相互作用。我们发现,通过改变压缩场的强度,弱脉冲的群速度可以从腔内变化到腔内。另外,我们利用这样一个事实,即可以通过控制驱动场和压缩场之间的相对相位来显着修改原子介质的属性,从而允许我们控制光传播的速度。这种现象的物理起源对应于原子相干从电磁感应的透明性向电磁感应的吸收的转移。此外,这种现象是在几乎透明的条件下实现的,并且传播脉冲的失真可以忽略不计。

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