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Short-term frequency stability measurement for narrow linewidth laser by time domain self-heterodyne method

机译:时域自外差法测量窄线宽激光器的短期频率稳定性

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Based on the time delay self-heterodyne method to measure the laser linewidth, the short-term linewidth variation of a narrow linewidth laser is experimentally studied and analyzed, and then a time domain self-heterodyne method is proposed to measure the short-term frequency stability of narrow linewidth laser. The Rayleigh backscattering frequency of a pulsed light propagating in an optical fiber with length of 100km is used as the local oscillation frequency with relatively long time duration to measure the frequency variation of the narrow linewidth laser. By heterodyne between the laser frequency and the local oscillation frequency, the variation of the laser frequency is presented in the heterodyne radio frequency (IF). Then the time domain data of the heterodyne IF are extracted by an oscilloscope and through short time Fourier transform the frequency from the laser in different time segments is obtained. Experimental results demonstrate that for narrow linewidth laser its frequency in short-term is randomly fluctuating with a range less than triple of the laser linewidth. The measurement and evaluation of laser short-term frequency stability benefits the application of narrow linewidth lasers in distributed optical fiber sensing area.
机译:基于时延自外差法测量激光线宽,对窄线宽激光器的短期线宽变化进行了实验研究和分析,提出了一种时域自外差法测量短期频率。窄线宽激光器的稳定性。在长度为100 km的光纤中传播的脉冲光的瑞利反向散射频率被用作具有相对较长持续时间的本地振荡频率,以测量窄线宽激光器的频率变化。通过外差在激光频率和本地振荡频率之间,外差射频(IF)表示了激光频率的变化。然后通过示波器提取外差IF的时域数据,并通过短时傅立叶变换获得不同时间段激光的频率。实验结果表明,对于窄线宽激光器,其短期频率随机波动,幅度小于激光器线宽的三倍。激光短期频率稳定性的测量和评估有利于窄线宽激光器在分布式光纤传感领域的应用。

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