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利用飞秒类贝塞尔光束在弯曲的金刚石-硫化锌复合表面高效制备红外减反射微结构。

Efficient fabrication of infrared antireflective microstructures on a curved Diamond-ZnS composite surface by using femtosecond Bessel-like beams.

作者信息

Wu Mengnan, Jiang Lan, Li Taoyong, Huang Ji, Yi Peng, Zhang Leyi, Li Min, Zhang Xiangyu, Li Xiaowei

出版信息

Opt Express. 2023 Aug 28;31(18):28670-28682. doi: 10.1364/OE.493455.

Abstract

Antireflective microstructures fabricated using femtosecond laser possess wide-ranging applicability and high stability across different spectral bands. However, due to the limited aspect ratio of the focused light field, traditional femtosecond laser manufacturing faces challenges in efficiently fabricating antireflective microstructures with high aspect ratio and small period, which are essential for antireflection, on curved surfaces. In this study, we present a robust and efficient method for fabricating high-aspect-ratio and basal surface insensitive antireflective microstructures using a spatially shaped Bessel-like beam. Based on theoretical simulation, a redesigned telescopic system is proposed to flexibly equalize the intensity of the Bessel beam along its propagation direction, facilitating the fabrication of antireflective subwavelength structures on the entire convex lens. The fabricated microstructures, featuring a width of less than 2 µm and a depth of 1 µm, enhance transmittance from 75% to 85% on Diamond-ZnS composite material (D-ZnS) surfaces. Our approach enables the creation of high aspect ratio subwavelength structures with a z-position difference exceeding 600 µm. This practical, efficient, and cost-effective method is facilitated for producing antireflective surfaces on aero-optical components utilized in aviation.

摘要

使用飞秒激光制造的抗反射微结构在不同光谱波段具有广泛的适用性和高稳定性。然而,由于聚焦光场的纵横比有限,传统的飞秒激光制造在曲面上高效制造具有高纵横比和小周期的抗反射微结构时面临挑战,而这些微结构对于抗反射至关重要。在本研究中,我们提出了一种稳健且高效的方法,利用空间整形的类贝塞尔光束制造高纵横比且对基底表面不敏感的抗反射微结构。基于理论模拟,提出了一种重新设计的伸缩系统,以灵活地均衡贝塞尔光束沿其传播方向的强度,便于在整个凸透镜上制造抗反射亚波长结构。所制造的微结构宽度小于2 µm,深度为1 µm, 在金刚石 - 硫化锌复合材料(D - ZnS)表面将透过率从75%提高到85%。我们的方法能够创建z位置差超过600 µm的高纵横比亚波长结构。这种实用、高效且经济高效的方法便于在航空中使用的气动光学部件上制造抗反射表面。

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