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利用四波混频产生Rb共振亮双模压缩光。

Generation of Rb resonant bright two-mode squeezed light with four-wave mixing.

作者信息

Kim Saesun, Marino Alberto M

出版信息

Opt Express. 2018 Dec 10;26(25):33366-33375. doi: 10.1364/OE.26.033366.

DOI:10.1364/OE.26.033366
PMID:30645489
Abstract

Squeezed states of light have found their way into a number of applications in quantum-enhanced metrology due to their reduced noise properties. In order to extend such an enhancement to metrology experiments based on atomic ensembles, an efficient light-atom interaction is required. Thus, there is a particular interest in generating narrow-band squeezed light that is on atomic resonance. This will make it possible not only to enhance the sensitivity of atomic based sensors, but also to deterministically transfer quantum correlations between two distant atomic ensembles. We generate bright two-mode squeezed states of light, or twin beams, with a non-degenerate four-wave mixing (FWM) process in hot Rb in a double-lambda configuration. Given the proximity of the energy levels in the D1 line of Rb and Rb, we are able to operate the FWM in Rb in a regime that generates two-mode squeezed states in which both modes are simultaneously on resonance with transitions in the D1 line of Rb, one mode with the F = 2 to F' = 2 transition and the other one with the F = 1 to F' = 1 transition. For this configuration, we obtain an intensity difference squeezing level of 3.5 dB. Moreover, the intensity difference squeezing increases to -5.4 dB and -5.0 dB when only one of the modes of the squeezed state is resonant with the D1 F = 2 to F' =-2 or F = 1 to F' = 1 transition of Rb, respectively.

摘要

由于其降低的噪声特性,压缩光态已在量子增强计量学的许多应用中得到应用。为了将这种增强扩展到基于原子系综的计量学实验中,需要高效的光 - 原子相互作用。因此,特别关注产生与原子共振的窄带压缩光。这不仅将提高基于原子的传感器的灵敏度,还将确定性地在两个远距离原子系综之间传递量子关联。我们在双λ配置的热铷中通过非简并四波混频(FWM)过程产生明亮的双模压缩光态,即孪生光束。鉴于铷D1线中能级的接近性,我们能够在铷中操作FWM,使其处于产生双模压缩态的 regime 中,其中两个模式同时与铷D1线中的跃迁共振,一个模式与F = 2到F' = 2跃迁共振,另一个模式与F = 1到F' = 1跃迁共振。对于这种配置,我们获得了3.5 dB的强度差压缩水平。此外,当压缩态的仅一个模式分别与铷的D1 F = 2到F' = -2或F = 1到F' = 1跃迁共振时,强度差压缩分别增加到 -5.4 dB和 -5.0 dB。

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