任成, 杨星团, 张书练. 微片Nd∶YAG 双频激光器腔调谐现象研究[J]. 应用光学, 2012, 33(6): 1147-1152.
引用本文: 任成, 杨星团, 张书练. 微片Nd∶YAG 双频激光器腔调谐现象研究[J]. 应用光学, 2012, 33(6): 1147-1152.
REN Cheng, YANG Xing-tuan, ZHANG Shu-lian. Cavity tuning characteristics of microchip Nd∶YAG dual-frequency laser[J]. Journal of Applied Optics, 2012, 33(6): 1147-1152.
Citation: REN Cheng, YANG Xing-tuan, ZHANG Shu-lian. Cavity tuning characteristics of microchip Nd∶YAG dual-frequency laser[J]. Journal of Applied Optics, 2012, 33(6): 1147-1152.

微片Nd∶YAG 双频激光器腔调谐现象研究

Cavity tuning characteristics of microchip Nd∶YAG dual-frequency laser

  • 摘要: 基于微片Nd∶YAG 正交偏振双频激光器,研究了若干重要的双频激光器腔调谐现象, 包括光强调谐、频差调谐、子谐振腔效应及频差闭锁等,给出了实验结果和数据。腔调谐下,正交双频的频差调谐量约为350 kHz;存在子谐振腔效应时,频差调谐量最大可达到2 MHz;未发现明显频差闭锁现象,频差最小值可达到14 MHz。

     

    Abstract: Studies on cavity tuning characteristics of dual-frequency lasers can be helpful for expanding laser physics theory and sensing applications. Based on microchip Nd:YAG orthogonally polarized dual-frequency laser, several important cavity tuning characteristics of dual-frequency laser are studied, including intensity tuning, frequency difference tuning, sub resonant cavity effect and frequency difference lock-in. Experimental results and data are presented. With cavity tuning, the variation of frequency difference between two orthogonally polarized frequencies can be up to 350 kHz; when sub resonant cavities exist, the maximum variation can be up to 2 MHz; frequency difference lock-in has not been found and the minimum frequency difference is about 14 MHz.

     

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