首页> 外文会议>International symposium on laser metrology;LM2008 >Error Analysis of Frequency Mixing on Heterodyne Interferometry Detecting Device for Superfinish Surface Scratch
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Error Analysis of Frequency Mixing on Heterodyne Interferometry Detecting Device for Superfinish Surface Scratch

机译:外表面超划痕外差干涉仪检测装置混频误差分析

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The precision measurement on surperfinish surface scratch has been currently paid much attention to on electronic products. To meet these demands, a novel method has been proposed which is based on heterodyne interferometry that utilizes birefringent lens as beam splitter and cantilever tip as scanning probe to get the measurement values of sample topography. But the optical nonlinear errors affect the measurement precision of the system. In this paper, we adopt the Jones matrix to analyze the elliptic polarization caused by the three factors existing at the same time, which are polarization ellipticity of laser source, installation orientation error and phase retardation of birefringent lens. The measurement errors of frequency mixing about these elliptic polarization beams arriving at the photodiode detecter are studied by vector theory. The results show that the measurement errors are periodic errors, and they will change from 1.24nm to 3.94 nm when the magnitude of orientation error of birefringent lens changes from 1°to 5°. Also, the methods of reducing measurement errors according to the numerical results in the system are suggested. The measurement precision will be improved by reducing the orientation error or choosing high performance laser source.
机译:目前,在电子产品上已经非常关注表面处理过剩的精度测量。为了满足这些需求,提出了一种基于外差干涉法的新颖方法,该方法利用双折射透镜作为分束器,并利用悬臂尖端作为扫描探针来获得样品形貌的测量值。但是光学非线性误差会影响系统的测量精度。本文采用琼斯矩阵分析了同时存在的三个因素引起的椭圆偏振,这三个因素分别是激光源的偏振椭圆率,安装方向误差和双折射透镜的相位延迟。利用矢量理论研究了到达光电二极管检测器的椭圆偏振光束混频的测量误差。结果表明,测量误差为周期性误差,当双折射透镜取向误差的大小从1°变为5°时,测量误差将从1.24nm改变为3.94 nm。此外,提出了根据系统中的数值结果减少测量误差的方法。通过减少定向误差或选择高性能激光源,可以提高测量精度。

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