无源光学谐振腔的设计加工及其在稳频激光器中的应用  被引量:4

The Design and Realization of High Fineness Passive Optical Resonator and Its Application in Lasers’ Frequency Stability

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作  者:石柱[1,2] 郭永瑞 徐敏志[1,2] 卢华东 SHI Zhu;GUO Yong-rui;Xu Min-zhi;LU Hua-dong(State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Opto-Electronics , Shanxi University, Taiyuan 030006, China;Collaborative Innovation Center of Eactreme Optics, Shanxi University, Taiyuan, Shanxi 030006, China)

机构地区:[1]山西大学光电研究所量子光学与光量子器件国家重点实验室,山西太原030006 [2]山西大学极端光学协同创新中心,山西太原030006

出  处:《量子光学学报》2018年第2期237-242,共6页Journal of Quantum Optics

基  金:科技部重大科学研究计划(2016YFA0301401);山西省重点学科建设“1331项目”

摘  要:设计和研制了两台自由光谱区为750MHz,精细度300的高精度控温无源光学谐振腔,分别用于监测自制的双10W级相位关联连续波1064/532nm双波长激光器的单频特性和作为稳频系统的参考腔,通过将双波长激光器的频率锁定到参考腔,进一步提升双波长激光器的输出频率和功率稳定性。单频1064nm激光器1min的频率漂移量以及4h内功率波动性分别由未锁定状态的21.82MHz和±0.97%降低到锁定条件下的9.84MHz和±0.32%。The design and processing of the passive controller have been demonstrated, and two Fabry-Per of 750 MHz and fineness of 300 have been realized. optical resonator with high precision temperature ot (F-P) caviti The two F-P es with the free spectral range (FSR) cavities are utilized in monitoring the single-frequency operation characteristic of a homemade dual-wavelength 1 064/532 nm laser with more than 10 W output power at each wavelength and act as the reference cavity for frequency stabilization system to further enhance frequency and output power stability of the dual-wavelength laser, respectively. With the frequency stabilization system, the frequency shift of the dual-wavelength laser at 1 064 nm in 1 min reduces from 21. 82 MHz to 9. 84 MHz, and the output power fluctuation within 4h decreases from ±0.97% to ±0.32%.

关 键 词:F-P干涉仪 全固态激光器 稳频 

分 类 号:O431[机械工程—光学工程]

 

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