Huang Shihong, Wan Minggui, Wu Jiayang, Lu Dunke, Zhang Bingzhi, Zheng Yanhua, Liu Cuihong, Fang Xiaohui
Appl Opt. 2022 Mar 1;61(7):1791-1796. doi: 10.1364/AO.452309.
We propose a precision measurement method of laser linewidth based on short-delay self-homodyne, using the second peak-valley difference (SPVD) feature of the coherent power spectrum to fit laser linewidth. The SPVD model of the self-homodyne coherent envelope spectrum was established. One-to-one correspondence among the values of SPVD, the delay length, and the laser linewidth was determined theoretically and through simulations, while the reliability and stability of the method was verified experimentally. By comparing the detected results, it is found that the fitted laser linewidth obtained by the self-homodyne system is closer to its true value than that obtained by the self-heterodyne system. Hence, the simpler structure of the short-delay self-homodyne coherent envelope laser linewidth measurement method proposed is expected to substitute the previous laser linewidth measurement method, including complex short-delay self-heterodyne coherent envelope laser linewidth measurement method and traditional self-homodyne/heterodyne laser linewidth measurement method, to achieve more precise laser linewidth value.
我们提出了一种基于短延迟自外差的激光线宽精密测量方法,利用相干功率谱的第二峰谷差(SPVD)特征来拟合激光线宽。建立了自外差相干包络谱的SPVD模型。从理论上并通过仿真确定了SPVD值、延迟长度和激光线宽之间的一一对应关系,同时通过实验验证了该方法的可靠性和稳定性。通过比较检测结果发现,自外差系统获得的拟合激光线宽比自差频系统获得的更接近其真实值。因此,所提出的短延迟自外差相干包络激光线宽测量方法结构更简单,有望替代先前的激光线宽测量方法,包括复杂的短延迟自差频相干包络激光线宽测量方法和传统的自外差/差频激光线宽测量方法,以获得更精确的激光线宽值。