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Laser frequency stabilization using selective reflection from a vapor cell with a half-wavelength thickness

机译:利用来自半波长厚度的蒸气室的选择性反射来稳定激光频率

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摘要

We have experimentally studied the selective reflection spectra of a circularly-polarized laser beam from a sub-micrometric Rb vapor cell with a thickness L around λ/2 (λ = 780 nm being the laser wavelength tuned to the D{sub}2 line) in the presence of a longitudinal magnetic field. Based on the results of these studies, we propose a new method for the tunable locking of the diode laser frequency, which does not require frequency modulation nor complex electronics. The experimental realization of the technique has demonstrated its effectiveness and its competitiveness with the known DAVVL-type methods.
机译:我们已经通过实验研究了来自亚微米级Rb蒸汽电池的圆偏振激光束的选择性反射光谱,其厚度L在λ/ 2附近(λ= 780 nm是调谐到D {sub} 2线的激光波长)在存在纵向磁场的情况下。根据这些研究的结果,我们提出了一种可锁定二极管激光频率的新方法,该方法不需要频率调制也不需要复杂的电子设备。该技术的实验实现通过已知的DAVVL型方法证明了其有效性和竞争力。

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