利用v型无源谐振器谐振反馈实现分布式反馈二极管激光器的稳频

Huilin Cao, Z. Tan, Shiyu Guan, Yunzheng Wang, Shirong Chen, Zeya Yang
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引用次数: 1

摘要

本文以超高精度稳定谐振腔的本征值作为参考频率,采用宽线宽半导体激光器作为光源。为了降低成本,本工作将光反馈效应与Pound- Drever- Hall激光稳频方法相结合,放弃了传统技术中使用的电光调制器,采用光路调谐方法对入射光场进行相位调制。本文从理论上推导了稳频技术中存在光反馈效应时误差信号的形状。根据该误差信号,通过电路系统控制反馈控制谐振腔的长度,从而成功地将谐振腔的谐振频率稳定在激光输出的中心频率上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency stabilization of a distributed feedback diode laser by resonant feedback from a V-type passive resonator
In this paper, the eigenvalue of the super-high precision stable resonator is used as a reference frequency, and the wide-linewidth semiconductor laser is used as a light source. To keep costs down, this work combines the optical feedback effect with the Pound- Drever- Hall laser frequency stabilization method, abandons the electro-optic modulator used in the traditional technology and adopts the optical path tuning method to carry out the phase modulation of the incident light field. The document derives from the shape of error signal in frequency stabilization technology in the presence of optical feedback effect notionally. As per this error signal, the length of resonator cavity is controlled by feedback controlled via the circuit system, and then successfully stabilizes the resonant frequency of the resonator at the center frequency of the laser output.
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