Optimal Design and Implementation of 3D Shape Restoration System for Femtosecond Laser Micromachining

Jeonghong Park, Dongin Park, Seungki Cho, Jihong Lee, Yunho Ko, Youngwoo Park
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Abstract

In this paper, we propose a 3D shape restoration system which measures height and surface of transparent ITO glass to compensate for focal length and incidence angle of laser beam to femtosecond laser micromachining. The proposed system is composed of line laser, high resolution camera, linear motion guide synchronized to image capturing and control station. To optimize positions of components, we define sensitivity index that represents the effect between measurement error and the position of a camera and line laser. The results of the proposed system are verified by comparing with the results of SPM (scanning probe microscope) and prove the usefulness of the system.
飞秒激光微加工三维形状恢复系统的优化设计与实现
本文提出了一种测量透明ITO玻璃高度和表面的三维形状恢复系统,以补偿飞秒激光微加工中激光束的焦距和入射角。该系统由直线激光器、高分辨率摄像机、与图像采集控制站同步的直线运动导轨组成。为了优化元件的位置,我们定义了灵敏度指数,该指数表示测量误差与相机和线激光器位置之间的影响。通过与SPM(扫描探针显微镜)结果的对比,验证了系统的有效性。
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