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Dark resonance of Cs atoms velocity-selected in a thin cell

机译:薄细胞中速度选择的Cs原子的暗共振

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We carried out experimental and theoretical research on dark Raman resonances in the absorption of the probe monochromatic wave in a thin vapor cell, whose length is much less than the diameters of probe and coupling laser beams. In this case, only the slow atoms have enough time to settle down to the dark quantum state during a free flight between the end walls of the cell. As a result, a sub-Doppler structure is observed when one sweeps both the coupling and probe laser frequencies keeping the Raman resonance condition. Second harmonic lock-in detection is used to evaluate sharpness of the dark-resonance line. The cell-length dependence of the observed spectral profile is satisfactorily reproduced by the steady-state analysis of the density matrix in which the velocity-dependent transit time effect is taken into account.
机译:我们对薄气相电池中探针单色波吸收中的暗拉曼共振进行了实验和理论研究,该薄气相细胞的长度远小于探针和耦合激光束的直径。在这种情况下,只有慢原子有足够的时间在电池端壁之间自由飞行期间沉降到暗量子状态。结果,当一个扫描耦合激光频率和探测激光频率同时保持拉曼共振条件时,观察到亚多普勒结构。二次谐波锁定检测用于评估暗共振线的清晰度。通过密度矩阵的稳态分析可以令人满意地再现观察到的光谱轮廓的细胞长度依赖性,其中考虑了速度相关的渡越时间效应。

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