局部环境对透明介质中量子发射器的探针信号吸收和共振荧光的影响

IF 0.8 4区 物理与天体物理 Q4 OPTICS Optics and Spectroscopy Pub Date : 2024-04-01 DOI:10.1134/s0030400x23070159
E. A. Smirnova, N. A. Lozing, M. G. Gladush, A. V. Naumov
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引用次数: 0

摘要

摘要 本文展示了在考虑透明介质内部局部场和近距离环境影响的情况下,对几种配置的两级光发射器系统的两种光谱曲线进行的理论分析。计算了在强单色 cw 激光激发下的探针场吸收光谱和共振荧光光谱。在揭示介质对单个发射体及其集合的影响方面,对吸收光谱和发射光谱光学方法的灵敏度进行了比较。考虑到透明介质的局部场影响和局部电子-声子相互作用,计算了模型发射器的光谱曲线,这决定了发射器对外部激光场和有效弛豫机制的响应。计算形式基于半经典方法,而与声子贡献相关的弛豫过程则以现象学方式引入,并参考了其他研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The Effects of Local Environment on a Probe Signal Absorption and Resonance Fluorescence for Quantum Emitters in Transparent Media

Abstract

The current paper demonstrates theoretical analysis of two types of spectral curves for several configurations of system of two-level light emitters, considering the influence of local field and close environment inside a transparent medium. Probe field absorption spectra and resonant fluorescence spectra are calculated under excitation of a strong monochromatic cw laser. The sensitivity of absorption and emission optical spectroscopy method is compared for revealing the effects of the medium on individual emitters and their ensembles. Spectral curves were calculated for model emitters considering local field influence of a transparent dielectric medium and local electron-phonon interactions, which determined the response of the emitters to an external laser field and effective relaxation mechanisms. The calculation formalism is based on a semiclassical approach, while the relaxation processes associated with the phonon contribution are introduced phenomenologically with references to other studies.

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来源期刊
Optics and Spectroscopy
Optics and Spectroscopy 物理-光谱学
CiteScore
1.60
自引率
0.00%
发文量
55
审稿时长
4.5 months
期刊介绍: Optics and Spectroscopy (Optika i spektroskopiya), founded in 1956, presents original and review papers in various fields of modern optics and spectroscopy in the entire wavelength range from radio waves to X-rays. Topics covered include problems of theoretical and experimental spectroscopy of atoms, molecules, and condensed state, lasers and the interaction of laser radiation with matter, physical and geometrical optics, holography, and physical principles of optical instrument making.
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