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Aperture edge scatter calibration of the cavity radiometers for the spaceflight Total Irradiance Monitor

机译:孔径边缘散射脉冲校准腔辐射仪的全辐射监测器

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Aperture area knowledge is a primary calibration in radiometric instruments. Corrections for edge effects, particularly diffraction and scatter, must also be taken into account for high accuracy measurements. The Total Irradiance Monitor (TIM) is a total solar irradiance radiometer on NASA's SORCE mission launched in 2003 and on the NASA/Glory mission launching in 2008. In order to measure irradiance, the TIM instrument measures the total optical power that passes through circular diamond-turned precision apertures. The geometric areas of the 8-mm diameter apertures are measured to approximately 25 parts per million (ppm) at the National Institute of Standards and Technology [1]. Due to scatter and diffraction, not all light that passes through the geometric area of an aperture will enter the radiometer cavity of the instrument, and corrections must be made for these edge effects. Diffraction effects are generally well understood and are calculated from the instrument geometry. Scatter, on the other hand, is dependent on the microscopic edge quality of each individual aperture, and so must be measured. This paper describes the measurement of aperture edge diffraction and scatter for the precision apertures on NASA's Glory/TIM instrument.
机译:光圈区域知识是辐射仪器中的主要校准。还必须考虑到高精度测量的边缘效应,特别是衍射和散射的校正。总辐照度监测仪(TIM)是2003年美国宇航局的索氏司徒的总太阳辐照辐射计,并于2008年启动了美国宇航局/荣耀竞技发射。为了测量辐照度,蒂姆仪器测量通过圆形钻石的总光功率-Turned精密孔。 8毫米直径孔的几何区域在国家标准研究所和技术研究所的百万(PPM)中测量到大约25份(PPM)[1]。由于散射和衍射,并非通过孔径的几何区域的所有光线将进入仪器的辐射计腔,并且必须为这些边缘效应进行校正。衍射效应通常很好地理解并由仪器几何计算。另一方面,散射取决于每个孔径的微观边缘质量,必须测量。本文介绍了NASA荣耀/蒂姆仪器上孔径边缘衍射和散射散射的测量。

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