石英玻璃减反射微结构的设计及制造方法

    Design and fabrication method of ARMS on fused silica glass

    • 摘要: 减反射微结构(antireflective microstructure, ARMS)是提升光学窗口透过率的重要方案。介绍了一种用于石英光学窗口ARMS的设计及制造方法。设计了仿蛾眼微结构模型,利用时域有限差分法(finite-difference time-domain,FDTD)实现了ARMS周期、深度、占空比等特征参数的调控,其理论平均透过率>96%。采用激光干涉光刻掩膜制备方法与微纳结构电感耦合等离子体刻蚀(ICP)技术,实现了ARMS的制备,利用扫描电子显微镜(scanning electron microscope,SEM)观测了ARMS的微观形貌。实际制备的ARMS特征尺度<200 nm,占空比>0.6。最后,通过与不同表面状态光学窗口透过率的比对,表明了设计及制造的ARMS可以有效提升石英玻璃光学窗口在450 nm~1500 nm波段的光学透过率。

       

      Abstract: Antireflective microstructure (ARMS) is an important method to improve the transmittance of optical windows. A design and fabrication method of ARMS on fused silica glass windows was introduced. A moth-eye microstructure model was designed. Using the finite-difference time-domain (FDTD) method, the characteristic parameters such as period, depth, and duty cycle of ARMS were controlled, and the theoretical average transmittance could exceed 96%. The fabrication of ARMS was realized by laser interference lithography mask preparation and inductively coupled plasma (ICP) etching of micro/nano structures. The microscopic morphology of ARMS was observed by scanning electron microscope (SEM). The fabricated ARMS have a feature size of less than 200 nm and a duty cycle greater than 0.6. Finally, a comparison of transmittance with optical windows of different surface states shows that the designed and fabricated ARMS can effectively improve the optical transmittance of quartz glass optical windows in the 450 nm ~1500 nm band.

       

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