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中国物理学会期刊

基于调控原子相干的Λ-型电磁感应透明与吸收

CSTR: 32037.14.aps.71.20220950

Λ-type electromagnetically induced transparency and absorption by controlling atomic coherence

CSTR: 32037.14.aps.71.20220950
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  • 在Λ-型电磁感应透明系统中, 随着弱探测光场逐渐增强, 多普勒展宽线性吸收背景之上呈现的单个窄线宽窗口演化成了相互间隔出现的3个窗口与2个吸收增强峰. 本文利用缀饰态模型对探测光强度的作用机制进行了详细的研究. 提出当探测光场不再足够弱时, 通过光强可以调控原子Raman相干; 对于多普勒增宽系统, 将使得缀饰态能量变化不连续以及因缀饰态双共振产生极大Raman损耗, 这是透明窗口演化的关键因素.

     

    In a Λ-type electromagnetically induced transparency system, it shows that on the Doppler-broadened linear absorption background, as the probe intensity increases, the single narrow line-width window gradually evolves into 3 windows and 2 absorption peaks alternately. In this paper, the mechanism of probe intensity is studied in detail by using the dressed-state model. We propose that when the probe field is not so weak, the atomic Raman coherence can be manipulated by its intensity. For a Doppler-broadened system, there will appear the discontinuous energy variation of the dressed-states, and the large Raman loss due to the double resonance for dressed-states, which are the key factors for the evolution of the transparency window.

     

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