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Development of Nanostructured Antireflection Coatings for EO/IR Sensor and Solar Cell Applications

机译:用于EO / IR传感器和太阳能电池应用的纳米结构减反射膜的开发

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Electro-optical/infrared (EO/IR) sensors and photovoltaic power sources are being developed for a variety of defense and commercial applications. One of the critical technologies that will enhance both EO/IR sensor and photovoltaic module performance is the development of high quality nanostructure-based antireflection coatings. In this paper, we review our work on advanced antireflection structures that have been designed by using a genetic algorithm and fabricated by using oblique angle deposition. The antireflection coatings are designed for the wavelength range of 250 nm to 2500 nm and an incidence angle between 00 and 400. These nanostructured antireflection coatings are shown to enhance the optical transmission through transparent windows over a wide band of interest and minimize broadband reflection losses to less than one percent, a substantial improvement over conventional thin-film antireflection coating technologies.
机译:电光/红外(EO / IR)传感器和光伏电源正在为各种国防和商业应用开发。可以提高EO / IR传感器和光伏模块性能的关键技术之一是开发基于纳米结构的高质量抗反射涂层。在本文中,我们回顾了我们在先进的抗反射结构上的工作,这些结构已使用遗传算法进行了设计,并通过倾斜角沉积进行了制造。防反射涂层的设计波长范围为250 nm至2500 nm,入射角在00到400之间。这些纳米结构的防反射涂层显示出可以提高在感兴趣的宽带上通过透明窗口的光传输,并最大程度地减少了宽带反射损耗。小于百分之一,这是对传统薄膜减反射涂层技术的重大改进。

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