Mao Wei, Zhang Shulian, Fei Ligang
State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing 100084, China.
Appl Opt. 2006 Nov 20;45(33):8500-5. doi: 10.1364/ao.45.008500.
High-frequency modulation of laser output intensity is studied with asymmetric feedback induced by the misalignment of an external feedback reflector in an orthogonal polarized dual frequency laser. The fringe frequency of the optical feedback system is seven times higher than that of a conventional optical feedback system, due to multiple feedback effects. The output characteristics of two orthogonal polarized modes are also investigated. Mode competition is observed between the two modes. When initial intensities of the two modes are unequal, the mode competition will be strong. The difference in initial intensity between the two orthogonally polarized modes plays an important role in the mode competition with optical feedback. Experimental results are presented, as well as a theoretical explanation. The high-frequency modulation of laser intensity can greatly increase the resolution of an optical feedback sensing system.
研究了正交偏振双频激光器中由外部反馈反射镜未对准引起的不对称反馈对激光输出强度的高频调制。由于多重反馈效应,光反馈系统的条纹频率比传统光反馈系统高七倍。还研究了两个正交偏振模式的输出特性。观察到两个模式之间的模式竞争。当两个模式的初始强度不相等时,模式竞争将很强烈。两个正交偏振模式之间的初始强度差异在光反馈模式竞争中起重要作用。给出了实验结果以及理论解释。激光强度的高频调制可以大大提高光反馈传感系统的分辨率。