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Electromagnetically induced transparency in a dipolar molecular system with Laguerre–Gaussian mode
Journal of Modern Optics ( IF 1.3 ) Pub Date : 2020-05-20 , DOI: 10.1080/09500340.2020.1774086
Abhay Mishra 1 , B. N. Jagatap 1
Affiliation  

Electromagnetically induced transparency (EIT) in a molecular three-level system with permanent dipole moments (PDMs) and the control beam in Laguerre–Gaussian (LG) mode is investigated. The results are compared with the atomic system where the use of LG mode yields EIT linewidth narrower than that with Gaussian mode. It is shown that in contrast to the atomic system, the linewidth of EIT in the dipolar molecular system with LG mode can be narrower as well as broader than that with Gaussian mode depending on the strength of the effective laser-molecule coupling. Peculiar space dependence of Bessel function in the laser-molecule coupling is at the origin of this distinctive feature. The results are further augmented by a discussion on PDM-mediated multi-photon absorption and multi-photon EIT profiles with LG and Gaussian modes.

中文翻译:

具有拉盖尔-高斯模式的偶极分子系统中的电磁感应透明度

研究了具有永久偶极矩 (PDM) 和拉盖尔-高斯 (LG) 模式控制光束的分子三级系统中的电磁感应透明度 (EIT)。结果与使用 LG 模式产生的 EIT 线宽比使用高斯模式窄的原子系统进行了比较。结果表明,与原子系统相比,LG 模式偶极分子系统中 EIT 的线宽可以比高斯模式更窄,也可以更宽,这取决于有效激光分子耦合的强度。激光-分子耦合中贝塞尔函数的特殊空间依赖性是这种独特特征的起源。通过对具有 LG 和高斯模式的 PDM 介导的多光子吸收和多光子 EIT 分布的讨论,进一步增强了结果。
更新日期:2020-05-20
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