Wu Yun, Zhang Shulian, Li Yan
The State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing 100084, China.
Opt Express. 2013 Jun 3;21(11):13684-90. doi: 10.1364/OE.21.013684.
The effect of intra-cavity phase anisotropy on polarization flipping induced by optical feedback is experimentally and theoretically investigated. In experiments, we place a polarizer in feedback cavity to induce polarization flipping. The polarization flipping doesn't occur when the angle between polarizer axis and laser polarization approaches 45°. It is found that the larger the phase anisotropy is, the more easily the polarization flipping happens. As the intra-cavity phase anisotropy is increased, polarization flipping always occurs when the angle between polarizer axis and laser polarization is changed from 0° to 90°. This indicates that the phase anisotropy of the laser cavity contributes to the polarization flipping. It is necessary to keep certain phase anisotropy for the lasers used for polarization control.
实验和理论研究了腔内相位各向异性对光反馈诱导的偏振翻转的影响。在实验中,我们在反馈腔中放置一个偏振器以诱导偏振翻转。当偏振器轴与激光偏振之间的夹角接近45°时,偏振翻转不会发生。发现相位各向异性越大,偏振翻转越容易发生。随着腔内相位各向异性的增加,当偏振器轴与激光偏振之间的夹角从0°变为90°时,偏振翻转总是会发生。这表明激光腔的相位各向异性有助于偏振翻转。对于用于偏振控制的激光器,保持一定的相位各向异性是必要的。