Method for more accurate transmittance measurements of low-angle scattering samples using an integrating sphere with an entry port beam diffuser

积分球 光学 透射率 扩散器(光学) 散射 镜面反射 材料科学 光散射 前向散射 吸收(声学) 梁(结构) 多角度光散射 光束 样品(材料) 物理 光源 热力学
作者
Annica M. Nilsson,Andreas Jönsson,Jacob C. Jonsson,Arne Roos
出处
期刊:Applied optics-OT [Optica Publishing Group]
卷期号:50 (7): 999-999 被引量:9
标识
DOI:10.1364/ao.50.000999
摘要

For most integrating sphere measurements, the difference in light distribution between a specular reference beam and a diffused sample beam can result in significant errors. The problem becomes especially pronounced in integrating spheres that include a port for reflectance or diffuse transmittance measurements. The port is included in many standard spectrophotometers to facilitate a multipurpose instrument, however, absorption around the port edge can result in a detected signal that is too low. The absorption effect is especially apparent for low-angle scattering samples, because a significant portion of the light is scattered directly onto that edge. In this paper, a method for more accurate transmittance measurements of low-angle light-scattering samples is presented. The method uses a standard integrating sphere spectrophotometer, and the problem with increased absorption around the port edge is addressed by introducing a diffuser between the sample and the integrating sphere during both reference and sample scan. This reduces the discrepancy between the two scans and spreads the scattered light over a greater portion of the sphere wall. The problem with multiple reflections between the sample and diffuser is successfully addressed using a correction factor. The method is tested for two patterned glass samples with low-angle scattering and in both cases the transmittance accuracy is significantly improved.
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