多能级级联系统中电磁感应透明的极化依赖性

V. Bharti, A. Wasan
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引用次数: 1

摘要

利用密度矩阵方法建立了级联多能级原子系统中电磁感应透明(EIT)的极化依赖性理论模型。在Λ (Λ)、V (V)和级联(Ξ)三能级系统中,已经对EIT进行了理论和实验研究。然而,在吸收测量中存在不对称性。为了理解这种不对称性,我们在EIT级联系统中引入了超精细能级。我们提出了一个五能级的原子系统,这是一个简单的87Rb的例子。本研究已扩展到探测激光器和控制激光器对电致发光的偏振依赖性。观察到不同偏振的激光,其透明窗口有显著的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polarization dependence of Electromagnetic Induced Transparency in multilevel cascade system
A theoretical model using density matrix approach has been presented to show the polarization dependence of Electromagnetically Induced Transparency (EIT) in cascade multilevel atomic system. EIT has already been investigated both theoretically and experimentally by using three-level system in lambda (Λ), vee (V), and cascade (Ξ) configurations. However there is asymmetry in absorption measurement. To understand this asymmetry we introduce hyperfine levels in EIT cascade system. We present a five-level atomic system, which is a simple case of 87Rb. This study has been extended to investigate the polarization dependence of probe and control lasers on EIT. It has been observed that there is significant change in transparency window for different laser polarizations.
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