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Sub-megahertz frequency stabilization of a diode 2 laser by digital laser current modulation

机译:通过数字激光电流调制实现的二极管2激光器的亚兆赫兹频率稳定

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摘要

Digital laser current modulation (DLCM) is a convenient laser stabilization scheme whose major advantages are simplicity and inexpensiveness of implementation. However, there is a tradeoff between the SNR of the error signal and the laser linewidth due to the direct laser frequency modulation. In this paper, we demonstrated that DLCM can reduce the FWHM linewidth of a tunable diode laser down to 500 kHz using the modulation transfer spectrum of 2 line of a Li6 atomic vapor. For this purpose, a theoretical model is provided to analyze the DLCM-based modulation transfer spectrum. From the analysis, we experimentally explored the modulation effect on the DLCM spectrum to minimize the laser linewidth. Our result shows the optimized DLCM can stabilize a diode laser into the sub-megahertz regime without requiring acousto-optic and electro-optic modulators.
机译:数字激光电流调制(DLCM)是一种方便的激光稳定方案,其主要优点是实现的简单性和廉价性。但是,由于直接进行激光频率调制,因此在误差信号的SNR与激光线宽之间需要权衡。在本文中,我们证明了DLCM可以利用Li6原子蒸气的2条线的调制转移谱将可调二极管激光器的FWHM线宽降低至500 kHz。为此,提供了一个理论模型来分析基于DLCM的调制传输频谱。通过分析,我们通过实验探索了对DLCM光谱的调制效应,以最大程度地减小了激光线宽。我们的结果表明,优化的DLCM可以将二极管激光器稳定在亚兆赫兹范围内,而无需声光和电光调制器。

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