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Effects of a laser beam profile to measure an aspheric mirror on a high-speed nanoprofiler using normal vector tracing method

机译:使用法线矢量跟踪方法测量激光束轮廓对高速纳米轮廓仪上非球面反射镜的测量

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摘要

In order to develop the next generation of ultraprecision aspheric mirrors, a high-speed nanoprofiler is indispensable. We have developed a new version of such a nanoprofiler by tracing the normal vector of a mirror surface. The profiler is based on the straightness of laser light without the use of a reference surface. Any aspheric mirror can be measured within a few nm. This nanoprofiler measures the normal vectors and their coordinates on the surface of a mirror. Each normal vector is determined by making the incident light path and the reflected light path coincident, which is done using two sets of two pairs of goniometers and a straight stage. The profile is calculated using the measurement points and the normal vectors on the surface. In this paper, we simulate and measure the effects on a laser beam profile in order to measure an aspheric mirror with a high-speed nanoprofiler using normal vector tracing. Taking the effects on the beam profile into consideration is required to measure profiles of aspheric mirrors within an accuracy of 1 nm.
机译:为了开发下一代超精密非球面反射镜,高速纳米轮廓仪必不可少。我们通过追踪镜面的法向矢量,开发了这种纳米轮廓仪的新版本。轮廓仪基于激光的直线度,而不使用参考表面。任何非球面镜都可以在几纳米范围内测量。该纳米轮廓仪可测量法线向量及其在镜面上的坐标。通过使入射光路和反射光路重合来确定每个法线向量,这是使用两组两组两对测角计和一个直线平台完成的。使用测量点和表面上的法线矢量来计算轮廓。在本文中,我们模拟并测量了对激光束轮廓的影响,以便使用法向矢量跟踪使用高速纳米轮廓仪测量非球面镜。需要考虑对光束轮廓的影响,以在1 nm的精度内测量非球面镜的轮廓。

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