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Goniometric and hemispherical reflectance and transmittance measurements of fused silica diffusers

机译:熔融石英漫射器的角向和半球反射率和透射率测量

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Fused silica diffusers, made by forming scattering centers inside fused silica glass, can exhibit desirable optical properties, such as reflectance or transmittance independent of viewing angle, spectrally flat response into the ultraviolet wavelength range, and good spatial uniformity. The diffusers are of interest for terrestrial and space borne remote sensing instruments, which use light diffusers in reflective and transmissive applications. In this work, we report exploratory measurements of two samples of fused silica diffusers. We will present goniometric bidirectional scattering distribution function (BSDF) measurements under normal illumination provided by the National Institute of Standards and Technology (NIST)'s Goniometric Optical Scatter Instrument (GOSI), by NIST's Infrared reference integrating sphere (IRIS) and by the National Aeronautics and Space Administration (NASA)'s Diffuser Calibration Laboratory. We also present hemispherical diffuse transmittance and reflectance measurements provided by NIST's Double integrating sphere Optical Scattering Instrument (DOSI). The data from the DOSI is analyzed by Prahl's inverse adding-doubling algorithm to obtain the absorption and reduced scattering coefficient of the samples. Implications of fused silica diffusers for remote sensing applications are discussed.
机译:通过在熔融石英玻璃内部形成散射中心而制成的熔融石英扩散器可以显示出所需的光学特性,例如独立于视角的反射率或透射率,在紫外波长范围内的光谱平坦响应以及良好的空间均匀性。漫射器对于地面和星载遥感仪器很感兴趣,这些仪器在反射和透射应用中使用了漫射器。在这项工作中,我们报告了对两个熔融石英扩散器样品的探索性测量。我们将介绍由美国国家标准技术研究院(NIST)的测角光学散射仪(GOSI),由NIST的红外参考积分球(IRIS)和美国国家航空航天局提供的在正常照明下的测向双向散射分布函数(BSDF)测量。航空航天局(NASA)的扩散器校准实验室。我们还介绍了NIST的双积分球光学散射仪(DOSI)提供的半球漫透射率和反射率测量结果。通过Prahl的逆加倍算法对DOSI的数据进行分析,以获得样品的吸收系数和降低的散射系数。讨论了熔融石英扩散器对遥感应用的影响。

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