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Fabrication of the Asymmetric Double-Sided Concave Microlens Arrays by Femtosecond Laser

机译:Femtosecond激光器的非对称双面凹微透镜阵列的制造

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In the last decades, fabrication of microlens array in materials with high-damage threshold has attracted increasing interest, especially in the application of high-power laser. In this paper, we propose an advanced strategy to efficiently fabricate microlens array on the surface of glass using a single-pulsed femtosecond laser wet etch process, which is a combination of high-speed laser scanning and the subsequent chemical etch with HF solution. Based on this method, double-sided microlens array, non-regular arrays consisting of close-packed concave microlens array on one side and regular concave MLA on the other side, were fabricated on the 1cm*1cm glass. Especially over one million microlenses could be acquired within an hour, exhibiting great superiority in practical application. Moreover, the optical properties of the asymmetric double-sided MLA were experimentally characterized, and the experimental results reveal the good light homogenization performance.
机译:在过去的几十年中,具有高损伤阈值的材料中微透镜阵列的制造引起了越来越令人利益,尤其是在高功率激光器的应用中。在本文中,我们提出了一种先进的策略,可以使用单脉冲飞秒激光湿蚀刻工艺在玻璃表面上有效地制造微透镜阵列,这是高速激光扫描和随后用HF溶液的化学蚀刻的组合。基于该方法,双面微透镜阵列,在一侧和另一侧的常规凹版MLA上由近填充凹微透镜阵列组成的非常规阵列,在1cm * 1cm玻璃上制造。特别是在一个小时内获得超过一百万的微透镜,在实际应用中表现出很大的优越感。此外,实验表征了不对称双面MLA的光学性质,实验结果揭示了良好的光均质化性能。

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