The Mathematical Analysis on the Nonlinearity under Different Subdivision Numbers with Ellipticity Polarization Laser Source

S. Wu, Zhiming Rao, Fang-sen Xie, Shijia Zeng, H. Hu
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Abstract

The nonlinear error is the main error source of the laser interferometer which is widely used in the precision engineering. This paper studies the relations between the nonlinear error and the heterodyne interferometer with the ellipticity polarization laser source under the different optical subdivision numbers. The simulation shows that if the two beams source are elliptical polarization with the same ellipse angle, the nonlinearity in four-pass-subdivision is bigger than two-pass-subdivision. However, if only one laser beam exists ellipticity polarization or both laser beams are ellipticity polarizations with different ellipse angles, the nonlinearity in four-pass-subdivision is smaller than two-pass-subdivision. This study is useful to design the heterodyne interferometer.
椭圆偏振激光源不同细分数下非线性的数学分析
非线性误差是激光干涉仪的主要误差源,在精密工程中有着广泛的应用。研究了椭圆偏振激光源外差干涉仪在不同光学细分数下的非线性误差与非线性误差的关系。仿真结果表明,当两束源为椭圆偏振且椭圆角相同时,四通细分的非线性比两通细分的非线性大。而当只有一束激光存在椭圆偏振或两束激光均为椭圆偏振且椭圆角不同时,四次细分的非线性小于两次细分。该研究对外差干涉仪的设计有一定的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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