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The Effects of Profile Errors of Microlens Surfaces on Laser Beam Homogenization

机译:微透镜表面轮廓误差对激光均质化的影响

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摘要

Microlens arrays (MLAs) are key optical components in laser beam homogenization. However, due to imperfect surface profiles resulting from microfabrication, the functionalities of MLAs in beam modulation could be compromised to some extent. In order to address this issue, the effects of surface profile mismatches between ideal and fabricated MLAs on beam homogenization were analyzed. Four types of surface profile errors of MLAs were modeled theoretically and numerical simulations were conducted to quantitatively estimate the effects of these profile errors on beam homogenization. In addition, experiments were conducted to validate the simulation results, revealing that profile errors leading to optical deviations located on the apex of microlenses affected beam homogenization less than deviations located further away from it. This study can provide references for the further applications of MLAs in beam homogenization.
机译:微透镜阵列(MLA)是激光光束均质化的关键光学组件。但是,由于微加工导致的表面轮廓不完美,光束调制中的MLA的功能可能会受到一定程度的损害。为了解决这个问题,分析了理想的MLA和预制的MLA之间的表面轮廓不匹配对光束均质化的影响。理论上建模了MLA的四种类型的表面轮廓误差,并进行了数值模拟,以定量估计这些轮廓误差对光束均质化的影响。另外,进行了实验以验证模拟结果,发现导致位于微透镜顶端的光学偏差的轮廓误差对光束均化的影响小于远离其的偏差。该研究可以为MLA在束均质化中的进一步应用提供参考。

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