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Initial Studies of the Bidirectional Reflectance Distribution Functionof Carbon Nanotube Structures for Stray Light ControlApplications

机译:碳纳米管结构对杂散光控制件的双向反射率分布功能的初步研究

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The Bidirectional Reflectance Distribution Function (BRDF) at visible and near-infrared wavelengths of Multi-Wall Carbon NanoTubes (MWCNTs) grown on substrate materials are reported. The BRDF measurements were performed in the Diffuser Calibration Laboratory (DCaL) at NASA's Goddard Space Flight Center, and results at 500nm and 900nm are reported here. In addition, the 8° Directional/Hemispherical Reflectance of the samples is reported from the ultraviolet to shortwave infrared. The 8° Directional/Hemispherical Reflectance was measured in the Optics Branch at NASA's Goddard Space Flight Center. The BRDF was measured at 0° and 45° incident angles and from -80° to +80° scatter angles using a monochromatic source. The optical scatter properties of the samples as represented by their BRDF were found to be strongly influenced by the choice of substrate. As a reference, the optical scattering properties of the carbon nanotubes are compared to the BRDF of Aeroglaze Z306TM and Rippey Ultrapol IVTM, a well-known black paint and black appliqué, respectively. The possibility, promise, and challenges of employing carefully engineered carbon nanotubes in straylight control applications particularly for spaceflight instrumentation is also discussed.
机译:报道了在基材材料上生长的多壁碳纳米管(MWCNT)的可见和近红外波长的双向反射率分布函数(BRDF)。 BRDF测量在NASA的戈达德航天飞行中心的扩散器校准实验室(DCAL)中进行,此处报告了500nm和900nm的结果。此外,从紫外线向短波红外线报告样品的8°方向/半球形反射率。在美国宇航局的戈达德太空飞行中心的光学分支机构中测量了8°定向/半球形反射率。使用单色源在0°和45°入射角和-80°至+ 80°散射角度下测量BRDF。发现由其BRDF表示的样品的光散射特性受到基材的选择受到强烈影响。作为参考,将碳纳米管的光散射性能与Aeroglaze Z306TM的BRDF和Rppey Ultrapol IVTM,众所周知的黑色涂料和黑色贴花进行比较。还讨论了尤其是用于跨空气仪器的跨闪光控制应用中仔细工程碳纳米管的可能性,承诺和挑战。

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