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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Frequency Stabilization of Diode Laser Using Dichroic-Atomic-Vapor Laser Lock Signals and Thin Rb Vapor Cell
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Frequency Stabilization of Diode Laser Using Dichroic-Atomic-Vapor Laser Lock Signals and Thin Rb Vapor Cell

机译:使用二色性原子蒸气激光锁定信号和薄Rb蒸气电池稳定二极管激光的频率

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摘要

We report the frequency stabilization of a diode laser by applying the dichroic-atomic-vapor laser lock (DAVLL) method to a thin Rb vapor cell. A 1-mm-long Rb vapor cell is used to obtain a sub-Doppler spectrum that is required for frequency locking, which is easier than in the case of using a saturated absorption spectrometer. A 794-nm diode laser is tuned to the Rb D_1 line, and sub-Doppler signals are observed by introducing a pumping beam and a probe beam in a perpendicular direction. We obtain error signals by subtracting the signals of σ~+ polarized beams from that of σ~- polarized beams in the presence of a magnetic field and stabilized the 794 nm diode laser frequency without modulating laser parameters. The stability of the 794-nm diode laser is evaluated using other independently stabilized diode laser.
机译:我们通过将二色性原子蒸气激光锁定(DAVLL)方法应用于薄Rb蒸气电池,报告了二极管激光器的频率稳定性。使用一个1毫米长的Rb蒸气室来​​获得锁频所需的亚多普勒光谱,这比使用饱和吸收光谱仪的情况更容易。将794 nm二极管激光器调谐到Rb D_1线,并通过在垂直方向上引入泵浦光束和探测光束来观察亚多普勒信号。我们通过在存在磁场的情况下从σ〜-偏振光束的信号中减去σ〜+偏振光束的信号来获得误差信号,并在不调制激光器参数的情况下稳定794 nm二极管的激光频率。使用其他独立稳定的二极管激光器评估794 nm二极管激光器的稳定性。

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