具有皮米级波长差的双波长染料激光器的功率比测量

Yancheng Guo, Qiunan Yang, Yuanyuan Zhang
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引用次数: 0

摘要

双波长激光器在光通信设备、激光雷达等领域有着广泛的应用。双波长激光器功率比的测量和控制直接影响到双波长激光器在这些领域的应用价值。实验中使用的双波长染料激光器波长相差只有几皮米。基于这一需求,本文创新性地提出了利用扫描 FP 干涉仪表征功率比的测量方法。通过建立理论模型和实验验证,验证了光谱响应与入射光功率之间的线性相关性。在此基础上,可分别优化光学布局设计和设计自动识别软件,实现功率比的在线监测。最后,利用该装置进行了长期实验评估,结果表明,基于扫描 FP 干涉仪的双波长功率比测量综合误差小于±3%,满足实验要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power ratio measurement of dual wavelength dye laser with picometer-level wavelength difference
Dual wavelength lasers have wide applications in optical communication equipment, lidar, and other fields. The measurement and control of dual wavelength laser power ratio affect the application value of dual wavelength lasers in these fields directly. The dual wavelength dye laser used in the experiment has a wavelength difference of only several picometers. Based on this demand, our paper innovatively proposes a measurement method that using a scanning FP interferometer to characterize the power ratio. The linear correlation between spectral response and incident light power was verified through the establishment of theoretical models and experimental verification. On this basis, the optimization of optical layout design and the design of automatic recognition software can be carried out separately to achieve online monitoring of power ratio. Finally, the device was used for long-term experimental assessment, and the results showed that the comprehensive error of dual wavelength power ratio measurement based on scanning FP interferometer was less than ± 3%, which met the experimental requirements.
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