论文标题

在非线性和非局部Rydberg介质中访问和操纵分散冲击波

Accessing and Manipulating Dispersive Shock Waves in a Nonlinear and Nonlocal Rydberg Medium

论文作者

Hang, Chao, Bai, Zhengyang, Li, Weibin, Kamchatnov, Anatoly M., Huang, Guoxiang

论文摘要

当非线性压倒化(或衍射)时,分散性冲击波(DSW)是在培养基中发生的引人入胜的波现象。希望创建具有低生成力量并意识到其主动控制的DSW是可取的,但仍然是一个长期的挑战。在这里,我们提出了一个计划,以产生弱光DSW并在涉及电磁诱导透明度(EIT)条件下涉及强烈相互作用的Rydberg状态的原子气中实现其操纵。我们表明,对于二维(2D)Rydberg气体,光学KERR非线性的弱非局部性可以显着改变DSW的边缘速度,并引起边缘速度的奇异行为,从而导致DSW的不稳定。但是,通过增加Kerr非局部性的程度,可以抑制边缘速度的单数行为和DSW的不稳定性。我们还表明,在系统在中间非局部性方面起作用时,可以创建DSW的3D Rydberg气体,并稳定地传播。由于EIT效应和Rydberg-Rydberg的巨大非局部Kerr非线性的巨大非线性,此处发现的DSW具有极低的生成功率。另外,可以实现对DSW的主动控制;特别是,可以通过关闭和控制激光场来以高效率和忠诚度来存储和检索它们。此处报告的结果不仅可用于揭示DSW的有趣物理,而且对于寻找非线性和非本地Rydberg媒体的有希望的应用。

Dispersive shock waves (DSWs) are fascinating wave phenomena occurring in media when nonlinearity overwhelms dispersion (or diffraction). Creating DSWs with low generation power and realizing their active controls is desirable but remains a longstanding challenge. Here, we propose a scheme to generate weak-light DSWs and realize their manipulations in an atomic gas involving strongly interacting Rydberg states under the condition of electromagnetically induced transparency (EIT). We show that for a two-dimensional (2D) Rydberg gas a weak nonlocality of optical Kerr nonlinearity can significantly change the edge speed of DSWs and induces a singular behavior of the edge speed and hence an instability of the DSWs. However, by increasing the degree of the Kerr nonlocality, the singular behavior of the edge speed and the instability of the DSWs can be suppressed. We also show that in a 3D Rydberg gas, DSWs can be created and propagate stably when the system works in the intermediate nonlocality regime. Due to the EIT effect and the giant nonlocal Kerr nonlinearity contributed by the Rydberg-Rydberg interaction, DSWs found here have extremely low generation power. In addition, an active control of DSWs can be realized; in particular, they can be stored and retrieved with high efficiency and fidelity through switching off and on a control laser field. The results reported here are useful not only for unveiling intriguing physics of DSWs but also for finding promising applications of nonlinear and nonlocal Rydberg media.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源