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Spectral narrowing of coherent population trapping resonance in laser-cooled and room-temperature atomic gas

机译:激光冷却和室温原子气体中相干阱俘获共振的光谱变窄

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We have investigated coherent population trapping (CPT) in laser-cooled as well as room-temperature (with and without buffer gas) rubidium atoms. The characteristic broad signal profile emerging from the two-photon Raman resonance for room-temperature atomic vapour is consistent with the theoretical calculation incorporating associated thermal averaging. The spectral width of the dark resonance obtained with cold atoms is found to be broadened, compared to roomtemperature vapour cell, due to the feeble role played by thermal averaging, although the cold atomic sample significantly overcomes the limitation of the transit time broadening. An alternative way to improve transit time is to use a buffer gas, with which we demonstrate that the coherent population trapping signal width is reduced to 540 Hz.
机译:我们已经研究了激光冷却以及室温(有或没有缓冲气体)rub原子中的相干阱(CPT)。室温原子蒸气的双光子拉曼共振产生的宽信号特征曲线与结合了相关热平均的理论计算是一致的。与室温蒸汽电池相比,发现冷原子获得的暗共振的光谱宽度变宽,这是由于热平均所起的微弱作用,尽管冷原子样品极大地克服了传播时间变宽的局限性。改善渡越时间的另一种方法是使用一种缓冲气体,通过这种气体我们可以证明相干种群捕获信号的宽度减小到<540 Hz。

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