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Enhanced gain and narrow linewidth of an optical cavity by the Doppler effect in a four-level atomic system

机译:在四能级原子系统中通过多普勒效应增强了光腔的增益和窄线宽

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摘要

A scheme for high gain and narrow linewidth of an optical cavity with a four-level atomic system is proposed by the Doppler effect via active Raman gain (ARG) process. Atomic motion leads to Doppler frequency shift which induces constructive interference for the linear susceptibility. The enhanced normal dispersion greatly narrows the cavity linewidth, and the amplified gain gives rise to a high cavity transmission. Simulation results show that the cavity linewidth based on ARG is about one order of magnitude narrower than that based on electromagnetically-induced transparency under the same conditions, and the cavity transmission intensity could be enhanced by nearly 30 times.
机译:通过主动拉曼增益(ARG)过程的多普勒效应,提出了一种具有四能级原子系统的光腔的高增益和窄线宽的方案。原子运动会导致多普勒频移,从而引起对线性磁化率的相长干涉。增强的法向色散大大缩小了腔的线宽,放大后的增益导致了高腔透射率。仿真结果表明,在相同条件下,基于ARG的腔体线宽比基于电磁感应透明性的腔体线宽窄大约一个数量级,并且腔体传输强度可以提高近30倍。

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