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Laser Feedback Interferometers Based on Orthogonally Polarized He-Ne Lasers

机译:基于正交偏振的HE-NE激光的激光反馈干涉仪

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A novel unattached laser feedback interferometer by combining the laser feedback effect with the frequency splitting technology is presented and demonstrated. Light source is the birefringence dual frequency He Ne laser which generates o-light and e-light with orthogonally polarized states. When the feedback mirror is moved along the laser axis, the intensity of both o-light and e-light is changed periodically. If a threshold intensity for the output light is appropriately given by the signal processing circuits, the remaining intensity curves in each period shows four different polarization states: e-light, e-light and o-light, o-light, and no-light. Each change of polarization state corresponds to 1/8 displacement of the feedback mirror. We determine the movement direction by the difference of the order of the polarization state appearance. The resolution of the system is 0.079μm. In the experiment, the reflectivity of feedback has no influence on waveform. The laser feedback interferometer is likely to become an instrument which has no real contact with a measured object.
机译:提出并说明了一种新颖的独立激光反馈干涉仪通过与频率分裂技术组合并进行了说明。光源是双折射双频HE NE激光,其产生具有正交偏振态的O光和电子光。当反馈镜沿激光轴移动时,o光和电子光的强度定期改变。如果通过信号处理电路适当地给出输出光的阈值强度,则每个时段中的剩余强度曲线示出了四种不同的偏振状态:E光,电子灯和O光,O光和无光线。偏振状态的每个变化对应于反馈镜的1/8位移。我们通过偏振态外观的顺序的差异来确定移动方向。该系统的分辨率为0.079μm。在实验中,反馈的反射率对波形没有影响。激光反馈干涉仪可能成为没有与测量物体的真正接触的仪器。

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