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Quasi-periodic concave microlens array for liquid refractive index sensing fabricated by femtosecond laser assisted with chemical etching

机译:飞秒激光辅助化学刻蚀制造的用于液体折射率传感的准周期凹微透镜阵列

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摘要

In this study, a high-efficiency single-pulsed femtosecond laser assisted with chemical wet etching method has been proposed to obtain large-area concave microlens array (MLA). The quasi-periodic MLA consisting of about two million microlenses with tunable diameter and sag height by adjusting laser scanning speed and etching time is uniformly manufactured on fused silica and sapphire within 30 minutes. Moreover, the fabricated MLA behaves excellent optical focusing and imaging performance, which could be used to sense the change of the liquid refractive index (RI). In addition, it is demonstrated that small period and high RI of MLA could acquire high sensitivity and broad dynamic measurement range, respectively. Furthermore, the theoretical diffraction efficiency is calculated by the finite domain time difference (FDTD) method, which is in good agreement with the experimental results.
机译:在这项研究中,提出了一种高效的单脉冲飞秒激光辅助化学湿法刻蚀以获得大面积凹面微透镜阵列(MLA)。准周期MLA由熔融石英和蓝宝石在30分钟内均匀制造,它由大约200万个微透镜组成,这些微透镜的直径和凸凹高度可通过调整激光扫描速度和蚀刻时间来调节。此外,所制造的MLA具有出色的光学聚焦和成像性能,可用于感测液体折射率(RI)的变化。另外,证明了MLA的小周期和高RI可以分别获得高灵敏度和宽动态测量范围。此外,通过有限域时差(FDTD)方法计算出理论衍射效率,与实验结果吻合良好。

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