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首页> 外文期刊>Infrared physics and technology >Multi-spectral antireflection coating on zinc sulphide simultaneously effective in visible, eye safe laser wave length and MWIR region
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Multi-spectral antireflection coating on zinc sulphide simultaneously effective in visible, eye safe laser wave length and MWIR region

机译:硫化锌上的多光谱抗反射涂层同时对可见,对眼睛安全的激光波长和MWIR区域有效

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摘要

In recent years multi-spectral device is steadily growing popularity. Multi-spectral antireflection coating effective in visible region for sighting system, laser wavelength for ranging and MWIR region for thermal system can use common objective/receiver optics highly useful for state of art thermal instrumentation. In this paper, design and fabrication of antireflection coating simultaneously effective in visible region (450-650 nm), Eye safe laser wave length (1540 nm) and MWIR region (3.6-4.9 μm) has been reported. Comprehensive search method of design was used and the number of layers in the design was optimised with lowest evaluated merit function studied with respect to various layers. Finally eight-layer design stack was established using hafnium oxide as high index layer and silicon-di-oxide as low index coating material combination. The multilayer stack had been fabricated by using electron beam gun evaporation system in Symphony 9 vacuum coating unit. During layer deposition the substrate was irradiated with End-Hall ion gun. The evaporation was carried out in presence of oxygen and layer thicknesses were measured with crystal monitor. The result achieved for the antireflection coating was 85% average transmission from 450 to 650 nm in visible region, 95% transmission at 1540 nm and 96% average transmission from 3.6 to 4.9 μm in MWIR region.
机译:近年来,多光谱设备正逐渐普及。在瞄准系统的可见区域,测距的激光波长和热系统的MWIR区域有效的多光谱抗反射涂层可以使用对先进的热仪表非常有用的通用物镜/接收器光学器件。在本文中,已经报道了在可见光区域(450-650 nm),人眼安全的激光波长(1540 nm)和MWIR区域(3.6-4.9μm)同时有效的抗反射涂层的设计和制造。使用了全面的设计搜索方法,并针对各个层研究了最低评估的价值函数,从而优化了设计中的层数。最终,使用氧化ha作为高折射率层和二氧化硅作为低折射率涂层材料组合,建立了八层设计堆栈。通过在Symphony 9真空镀膜装置中使用电子束枪蒸发系统制造了多层堆叠。在层沉积期间,用End-Hall离子枪辐照衬底。在氧气存在下进行蒸发,并用晶体监测仪测量层厚度。减反射涂层的结果是:可见光区域内从450到650 nm的平均透射率为85%,1540 nm处为95%的透射率,MWIR区域为3.6到4.9μm的平均透射率为96%。

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