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Stitched Acousto-Optic Modulator Stroboscopic Interferometry for characterizing larger microstructures

机译:缝合式声光调制器频闪干涉仪,用于表征较大的微结构

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摘要

Large field of view with higher resolution has become a strong requirement for the present measurement technology. Currently used sub-aperture stitching methods are suffering from the inaccuracies of computer controlled stages. In this work three different simplified stitching methods are presented. The stitching process proposed here is based on Acousto-Optic Modulator Stroboscopic Interferometry (AOMSI) of fixed field of view (FOV) and it does not require any computer controlled stage. A large microcantilever was tested in two stages, one from the root and the other from the tip portions separately, and the complete profile of the cantilever was extracted using the proposed stitching methods. The same cantilever also was tested using a commercial profilometer with a full field of view. There was a good agreement between the results from the proposed methods and a commercial profilometer. Obtaining extremely low amount of variation using the presented stitching methods validates the proposed stitching methods for large microstructures.
机译:具有高分辨率的大视场已成为当前测量技术的强烈要求。当前使用的子孔径拼接方法受到计算机控制平台的不准确性的困扰。在这项工作中,提出了三种不同的简化缝合方法。此处提出的拼接过程基于固定视场(FOV)的声光调制器频闪干涉法(AOMSI),不需要任何计算机控制的平台。对大型微悬臂梁进行了两个阶段的测试,一个阶段从根部开始,另一个阶段从尖端部分开始,然后使用建议的缝合方法提取悬臂梁的完整轮廓。相同的悬臂也使用具有完整视野的商用轮廓仪进行了测试。拟议方法的结果与商业轮廓仪之间取得了很好的一致。使用所提出的缝合方法获得的变化量极低,验证了针对大型微结构提出的缝合方法。

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