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激光器内腔频差对双折射外腔激光回馈系统输出影响的理论及实验研究
引用本文:牛海莎,祝连庆,宋建军,董明利,娄小平.激光器内腔频差对双折射外腔激光回馈系统输出影响的理论及实验研究[J].物理学报,2018,67(15):154201-154201.
作者姓名:牛海莎  祝连庆  宋建军  董明利  娄小平
作者单位:1. 北京信息科技大学, 仪器科学与光电工程学院, 北京 100192; 2. 清华大学, 精密测试技术及仪器国家重点实验室, 北京 100084
基金项目:教育部长江学者与创新团队发展计划(批准号:IRT_16R07)资助的课题.
摘    要:玻璃材料的内应力关系及所在系统的稳定性、安全性和可靠性,是精密加工领域的重要问题.基于双折射外腔激光回馈效应的应力测量技术以其先进新颖的测量原理受到普遍关注.传统理论普遍认为双折射回馈系统中激光器的输出相位仅由外腔相位延迟决定,而将测量误差归因于外腔镜的非线性运动.本文结合正交偏振激光原理和三镜腔等效模型,测量了激光器的内腔双折射引起的频差大小,进行了频率调谐回馈实验,并根据结论计算了内腔频差对外腔相位延迟测量结果的影响,发现激光器的输出相位由外腔相位延迟、内腔频差、外腔长度共同决定.本文总结了内腔和外腔各向异性共同作用下激光器正交偏振态的相位特性,补充了激光回馈的物理内容,对于应力-双折射、位移、距离等重要参量的精确测量,都具有重要指导意义.

关 键 词:内腔频差  双折射  回馈  相位差
收稿时间:2018-01-30

Theoretical and experimental research on influence of cavity frequency difference in birefringent laser feedback system
Niu Hai-Sha,Zhu Lian-Qing,Song Jian-Jun,Dong Ming-Li,Lou Xiao-Ping.Theoretical and experimental research on influence of cavity frequency difference in birefringent laser feedback system[J].Acta Physica Sinica,2018,67(15):154201-154201.
Authors:Niu Hai-Sha  Zhu Lian-Qing  Song Jian-Jun  Dong Ming-Li  Lou Xiao-Ping
Institution:1. School of Instrument Science and Opto-electronics Engineering, Beijing Information Science and Technology University, Beijing 100192, China; 2. State Key Laboratory of Precision Measurement Technology and Instruments, Tsinghua University, Beijing 100084, China
Abstract:The internal stress of glass material directly affects the processing quality of glass components and the service life of optical components. It is an important factor that relates to the overall system performance, safety, and reliability. Aerospace, precision optical systems, precision machining and other areas generally highly value the stress measurements of glass components. For example, the internal stress in the medium-glass material of precision imaging system will lead to the degradation of optical performance and reduce the image quality; the stress in the glass material used as the gain medium of high-power solid-state lasers not only directly affects the polarization state of the output light, but also shortens the service life of the laser; the stress concentration in the load-bearing glass of aircraft windshields, building glass curtain walls, etc., will cause serious accidents such as popping due to the reduction of glass mechanical properties. Therefore, the high sensitivity and large measurement range of stress detection technology has become a current research hotspot. Stress measurement techniques based on the birefringent external cavity laser feedback effect has received widespread attention due to its advanced and novel measurement principle. It is generally accepted in the traditional theory that the output phase of the laser in a feedback system is only determined by the phase retardation of birefringent element in an external cavity, and the measurement error is induced by the non-linear movement of external mirror. In this paper, the orthogonally polarized laser principle and the three-cavity equivalent model are combined to explain the influence of cavity frequency difference on the output of laser in feedback system. The frequency difference caused by the birefringence of the laser cavity is measured by comparing the intervals between adjacent longitudinal modes, and the frequency tuning feedback experiment is carried out. Theoretical analysis and experimental results show that the output phase of the laser is determined by the phase retardation of the external cavity, the frequency difference of the internal cavity, and the length of the external cavity. This conclusion is also confirmed by the measurement of the standard quarter wave plate. For a feedback system with an internal cavity frequency difference of 5 MHz and external cavity length of 150 mm, the phase difference induced by internal cavity frequency difference is about 0.573°. The laser can output a single longitudinal mode below 40 MHz of the internal cavity frequency difference, and the length of the external cavity is generally larger than 150 mm when the actual system is designed, so the phase difference introduced by these two parameters cannot be ignored and must be calibrated. This study summarizes the phase characteristics of the orthogonally polarized laser under the joint of anisotropy feedback cavity, supplements the physical content of the laser feedback, and has great significance for accurate laser measurement of stress-birefringence, displacement, and distance.
Keywords:cavity frequency difference  birefringence  feedback  phase difference
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