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Characterization of highly absorbing black appliques in the infrared

机译:红外吸收性高的黑色贴花的表征

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摘要

Angular and polarimetric directional hemispherical reflectance (DHR) measurements of three highly absorbing appliques in the 2.5-14.3-μm IR spectral region are presented. In addition, scanning electron microscopy (SEM) images are presented to probe the surface morphology of these appliques. DHR measurements of Energy Science Laboratory, Incorporated (ESLI), Rippey, and Rodel appliques were obtained at incidence angles of 8°,30°, and 50°and as a function of S,P, and unpolarized incident light. The ESLI applique exhibited the lowest DHR for all angles and incident polarization states. SEM images revealed a fibrous structure for the ESLI applique with fiber diameters of the order of 7-8 μm, whereas the Rippey and the Rodel appliques showed spongelike surfaces with pore diameters of 40-50 and 30-40 μm, respectively. All the appliques use cavities or fibers in conjunction with carbon compounds to absorb IR radiation. The optical system designed to perform these measurements, a method for correcting off-normal DHR measurements in center-mount integrating spheres, and sources of measurement error are also discussed.
机译:提出了在2.5-14.3μm红外光谱范围内的三种高吸收贴花的角和极化定向半球反射率(DHR)测量。此外,还提供了扫描电子显微镜(SEM)图像以探测这些贴花的表面形态。在入射角分别为8°,30°和50°且与S,P和非偏振入射光有关的情况下,获得了能源科学实验室有限公司(ESLI),Rippey和Rodel贴花的DHR测量值。对于所有角度和入射偏振态,ESLI贴花均显示出最低的DHR。 SEM图像显示了ESLI贴花的纤维结构,其纤维直径为7-8μm,而Rippey和Rodel贴花显示出海绵状表面,其孔径分别为40-50和30-40μm。所有贴花均使用空腔或纤维以及碳化合物吸收红外辐射。还讨论了设计用于执行这些测量的光学系统,一种用于校正中心安装积分球中非正常DHR测量的方法以及测量误差的来源。

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