Wan Fu, Wang Rui, Ge Hu, Kong Weiping, Sun Hongcheng, Wu Haoyuan, Zhao Gang, Ma Weiguang, Chen Weigen
Opt Express. 2024 Mar 25;32(7):12428-12437. doi: 10.1364/OE.520346.
The challenges presented by the directly reflected field in optical feedback cavity-enhanced spectroscopy systems serve as substantial obstacles, introducing additional complexity to existing systems and compromising their sensitivity, as the underlying mechanisms of its adverse effects remain not fully understood. This study aims to address this issue by introducing a comprehensive analytical model. Additionally, frequency locking can be achieved by decreasing the feedback rate, the laser's linewidth enhancement factor, and the directly reflected field, and by increasing the refractive index of the gain medium, the length of the laser's resonant cavity, the electric field reflectivity of the laser's output facet, and the resonant field. These parameters can affect the feedback coupling rate pre-factor, and for a resonant cavity with a length of 0.394 m, optical feedback can only be established when the feedback coupling rate pre-factor is less than 1.05 × 10. Through experimental validation, we successfully confirm the effectiveness of the proposed solution in eliminating the detrimental effects of the directly reflected field. Importantly, this suppression is achieved without compromising other aspects of the system's performance. The research findings not only offer the potential to optimize various cavity-enhanced spectroscopy systems that rely on optical feedback but also show promising applications in advancing the development of high-purity spectrum diode lasers utilizing optical feedback from an external high-finesse cavity.
光反馈腔增强光谱系统中直接反射场带来的挑战构成了重大障碍,给现有系统引入了额外的复杂性并损害了其灵敏度,因为其不利影响的潜在机制仍未完全理解。本研究旨在通过引入一个全面的分析模型来解决这个问题。此外,可以通过降低反馈速率、激光的线宽增强因子和直接反射场,并通过增加增益介质的折射率、激光谐振腔的长度、激光输出面的电场反射率和谐振场来实现频率锁定。这些参数会影响反馈耦合速率预因子,对于长度为0.394 m的谐振腔,只有当反馈耦合速率预因子小于1.05×10时才能建立光反馈。通过实验验证,我们成功证实了所提出的解决方案在消除直接反射场的有害影响方面的有效性。重要的是,这种抑制是在不损害系统性能其他方面的情况下实现的。研究结果不仅为优化各种依赖光反馈的腔增强光谱系统提供了潜力,还在推进利用外部高精细度腔的光反馈的高纯度光谱二极管激光器的发展方面显示出有前景的应用。