论文标题

基于电磁诱导的透明度的Rydberg Polaritons的弱相互交互的多体系统

A Weakly-Interacting Many-Body System of Rydberg Polaritons Based on Electromagnetically Induced Transparency

论文作者

Kim, Bongjune, Chen, Ko-Tang, Hsiao, Shih-Si, Wang, Sheng-Yang, Li, Kai-Bo, Ruseckas, Julius, Juzeliunas, Gediminas, Kirova, Teodora, Auzinsh, Marcis, Chen, Ying-Cheng, Chen, Yong-Fan, Yu, Ite A.

论文摘要

我们提出了利用具有较高光学深度(OD)的介质和低原金量子数($ n $)的Rydberg状态,以基于电磁引起的透明度(EIT)的效果,创建了Rydberg Polaritons的弱相互作用的多体系统。我们通过实验验证了弱相互作用的Rydberg Polaritons的平均场方法,并观察到偶极 - 偶极相互作用(DDI)引起的相移和衰减。 DDI诱导的相移或衰减可以是由于Rydberg Polaritons之间的弹性或非弹性碰撞而被视为。使用弱相互交互的系统,我们进一步观察到,与入口相比,在系统出口处,较大的DDI强度会导致Rydberg Polaritons在系统出口处的动量分布的宽度显着较小。在这项研究中,我们采用了$ n = 32 $,原子(或极化)密度为5 $ \ times10^{10} $(或2 $ \ times10^{9} $)cm $^{ - 3} $。观察结果表明,弹性碰撞足以在这种弱相互交互的多体系统中驱动热化过程。由于DDI,由于DDI而导致的$ $ $ S长交互时间和$μ$ m $^2 $ size Collision Cross截面的组合表明,Rydberg Polaritons的Bose-Einstein Condensation是一个新的可行平台。

We proposed utilizing a medium with a high optical depth (OD) and a Rydberg state of low principal quantum number, $n$, to create a weakly-interacting many-body system of Rydberg polaritons, based on the effect of electromagnetically induced transparency (EIT). We experimentally verified the mean field approach to weakly-interacting Rydberg polaritons, and observed the phase shift and attenuation induced by the dipole-dipole interaction (DDI). The DDI-induced phase shift or attenuation can be viewed as a consequence of the elastic or inelastic collisions among the Rydberg polaritons. Using a weakly-interacting system, we further observed that a larger DDI strength caused a width of the momentum distribution of Rydberg polaritons at the exit of the system to become notably smaller as compared with that at the entrance. In this study, we took $n =32$ and the atomic (or polariton) density of 5$\times10^{10}$ (or 2$\times10^{9}$) cm$^{-3}$. The observations demonstrate that the elastic collisions are sufficient to drive the thermalization process in this weakly-interacting many-body system. The combination of the $μ$s-long interaction time due to the high-OD EIT medium and the $μ$m$^2$-size collision cross section due to the DDI suggests a new and feasible platform for the Bose-Einstein condensation of the Rydberg polaritons.

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