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Nanostructured Antireflection Coatings for Infrared Sensors and Applications

机译:用于红外传感器和应用的纳米结构减反射膜

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Infrared (IR) technology plays a critical role in a wide range of terrestrial and space applications. IR sensing technologies and systems operating from the near-infrared (NIR) to long-wave infrared (LWIR) spectra are being developed for a variety of defense and commercial system applications. However, the performance of IR systems can be significantly limited by signal losses due to reflections from the IR substrates. Optical coatings with high antireflection (AR) characteristics can overcome this limitation and yield substantial enhancement in IR system performance. Magnolia is actively working on the development and advancement of ultrahigh performance AR coatings for a wide variety of defense and commercial applications. These nanostructured AR coatings have been demonstrated for ultraviolet (UV) to LWIR spectral bands on various substrates. The AR coatings enhance the transmission of light through optical components and devices by significantly minimizing reflection losses, providing substantial improvement over conventional thin film AR coating technologies. Nanostructured AR coatings have been fabricated using a tunable self-assembly process on substrates transparent for a given spectra of interest ranging from the UV to LWIR. The nanostructured multilayer coatings have been designed, developed and optimized for various optoelectronic applications. The optical properties of AR-coated optical and IR components and sensor substrates have been measured and fine-tuned to achieve a high level of performance. In this paper, we review our latest work focusing on high quality nanostructure-based AR coatings, including recent efforts to develop of the nanostructured coatings on IR-transparent substrates.
机译:红外(IR)技术在广泛的地面和太空应用中起着至关重要的作用。正在开发从近红外(NIR)到长波红外(LWIR)光谱的IR传感技术和系统,以用于各种国防和商业系统应用。但是,由于来自IR基板的反射,信号损失会严重限制IR系统的性能。具有高抗反射(AR)特性的光学镀膜可以克服此限制,并大大提高IR系统的性能。玉兰积极致力于超高性能增透膜的开发和改进,适用于多种国防和商业应用。这些纳米结构的增透膜已被证明可在各种基材上用于紫外线(UV)到LWIR光谱带。通过显着最小化反射损耗,AR涂层增强了通过光学组件和设备的光传输,与传统的薄膜AR涂层技术相比有了实质性的改进。对于从UV到LWIR的给定感兴趣光谱,已经使用可调自组装工艺在透明基板上制备了纳米结构的增透膜。纳米结构多层涂层已经针对各种光电应用进行了设计,开发和优化。已测量和微调增透膜,光学和红外组件以及传感器基板的光学性能,以实现高水平的性能。在本文中,我们回顾了我们针对高质量纳米结构增透膜的最新工作,包括在红外透明基材上开发纳米结构膜的最新努力。

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