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Suppression of residual amplitude modulation appeared in commercial electro-optic modulator to improve iodine-frequency-stabilized laser diode using frequency modulation spectroscopy

机译:抑制商业电光调制器中的残余幅度调制,以改善频率调制光谱改善碘频稳定激光二极管

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摘要

Abstract Background This paper shows how to suppress residual amplitude modulation (RAM) appeared in a commercial electro-optic modulator (EOM) to improve an iodine-frequency-stabilized laser diode (LD) using frequency modulation spectroscopy (FMS). Since the RAM of an EOM is affected by the temperature of the EOM, the DC-offset applied to the EOM and the polarization of the incident beam, it should easily fluctuate with drifts in temperature, applied voltage, and polarization. The fluctuation of the RAM of the EOM, which might decrease the frequency stability of the iodine-frequency-stabilized LD, must be eliminated by some means. Methods In this paper, we present a theoretical analysis and experimental results to express the RAM error from the EOM in a LD frequency stabilization system near 633 nm using iodine-saturated absorption. A RAM compensation system, which actuates the temperature of the EOM and the DC-offset applied to the EOM, is constructed for the commercial EOM. Results Using the RAM compensation system, the RAM is reduced to 10− 4 order, and frequency stability of ~ 3.67 × 10− 11 for 1000 s is achieved for the LD. Conclusions The proposed method can be applied for normal frequency stabilizing LDs, which use a commercial EOM and a low modulation index with FMS.
机译:摘要背景本文显示了如何抑制商业电光调制器(EOM)中出现的剩余幅度调制(RAM),以使用频率调制光谱(FMS)改善碘频稳定激光二极管(LD)。由于EOM的RAM受到EOM的温度的影响,因此施加到EOM的DC偏移和入射光束的偏振,它应该容易地波动在温度,施加的电压和极化中。 EOM的RAM的波动可能降低碘频稳定LD的频率稳定性,必须通过一些方法消除。方法在本文中,我们介绍了一种理论分析和实验结果,以使用碘饱和的吸收,在633nm附近的LD频率稳定系统中从EOM表达RAM误差。致动EOM的温度和应用于EOM的温度的RAM补偿系统是为商业EOM构建的。结果采用RAM补偿系统,RAM减小到10-4阶,为LD实现了〜3.67×10-11的频率稳定性。结论所提出的方法可以应用于正常频率稳定LDS,它使用商业EOM和具有FMS的低调制指数。

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