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通过飞秒激光辅助化学蚀刻与精密玻璃成型工艺相结合制备硫族化物玻璃基六边形无间隙微透镜阵列

Fabrication of Chalcogenide Glass Based Hexagonal Gapless Microlens Arrays via Combining Femtosecond Laser Assist Chemical Etching and Precision Glass Molding Processes.

作者信息

Zhang Fan, Yang Qing, Bian Hao, Li Minjing, Hou Xun, Chen Feng

机构信息

State Key Laboratory for Manufacturing System Engineering and Shaanxi Key Laboratory of Photonics Technology for Information, School of Electronic Science and Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Materials (Basel). 2020 Aug 7;13(16):3490. doi: 10.3390/ma13163490.

Abstract

Chalcogenide glasses (ChGs) are emerging as critical infrared (IR)-enabled materials in advanced IR optical systems by the wealth of their transparency in the key wide infrared (IR) transmission window. However, fabrication of ChG-based integrated micro-optical components in an efficient and economical way remains a huge challenge. In this paper, a 3D close-packed hexagonal microlens array (MLA) possessing over 6000 convex hexagonal micro-lenslets with the size of tens of micrometers within a footprint of 10 mm × 10 mm on a GeSbSe ChG surface was successfully fabricated via a precise thermal-mechanical molding process. The master mold of ChG MLA was firstly fabricated by a femtosecond laser-assisted chemical etching process and then transferred on to the surface of the ChG via a precision thermo-mechanical molding process, which resulted in a convex MLA. The morphology, imaging and focusing performances of the as-prepared ChG MLA were investigated and demonstrated the advancement of the method. Meanwhile, the IR transmittance and x-ray diffraction image of the ChG MLAs were measured to verify the structural and compositional stability of the ChG under the given molding conditions. The combined results proved a new route to mass production of miniaturized gapless ChG MLAs for advanced infrared micro-optics.

摘要

硫族化物玻璃(ChGs)凭借其在关键的宽红外(IR)传输窗口的丰富透明度,正成为先进红外光学系统中至关重要的启用红外(IR)的材料。然而,以高效且经济的方式制造基于ChG的集成微光学元件仍然是一个巨大的挑战。在本文中,通过精确的热机械成型工艺,成功在GeSbSe ChG表面10毫米×10毫米的面积内制造出了一个具有6000多个凸六边形微透镜的3D紧密堆积六边形微透镜阵列(MLA),这些微透镜的尺寸为几十微米。ChG MLA的母模首先通过飞秒激光辅助化学蚀刻工艺制造,然后通过精密热机械成型工艺转移到ChG表面,从而得到一个凸MLA。对所制备的ChG MLA的形貌、成像和聚焦性能进行了研究,并证明了该方法的先进性。同时,测量了ChG MLA的红外透射率和X射线衍射图像,以验证在给定成型条件下ChG的结构和成分稳定性。综合结果证明了一条用于大规模生产用于先进红外微光学的小型无间隙ChG MLA的新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7261/7475922/ea1f5aea6c18/materials-13-03490-g001.jpg

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