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CLARREO Reflected Solar Spectrometer: Restrictions for Instrument Sensitivity to Polarization

机译:CLARREO反射太阳光谱仪:仪器对偏振的敏感性的限制

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The foundation for future space mission Climate Absolute Radiance and Refractivity Observatory (CLARREO) is the ability to produce climate change benchmark records and provide on-orbit calibration standard through the highly accurate and -traceable observations. The accuracy of CLARREO measurements is set to 0.3% for spectrally resolved reflectance. The instrument sensitivity to polarization and polarization of reflected light at the top of atmosphere are the sources for systematic uncertainty. In this paper, we estimate radiometric errors due to polarization effects for CLARREO benchmark and reference intercalibration observations. Data from the Polarization and Anisotropy of Reflectance for Atmospheric Sciences coupled with Observations from Lidar (PARASOL) instrument, a spaceborne polarimeter, have been used in combination with the orbital modeling of Earth's sampling. For the CLARREO benchmark data, we used simulated annual nadir sampling for the polar orbit with 90° inclination, and for the intercalibration with cross-track sensors on the JPSS, such as CERES and VIIRS, we simulated on-orbit matched data sampling. Selected PARASOL data over one full solar year provided polarization parameters in visible (VIS) spectral range. For estimating polarization in near infrared (NIR) spectral range, we used a radiative transfer model. Our results show that to limit error contribution due to polarization to half of the allowed total, the sensitivity to polarization of CLARREO reflected solar instrument should not exceed 0.5% in spectral range from VIS to NIR.
机译:未来空间飞行任务的绝对辐射和折射率天文台(CLARREO)的基础是能够生成气候变化基准记录并通过高度准确和可追溯的观测结果提供在轨校准标准的能力。对于光谱分辨的反射率,CLARREO测量的精度设置为0.3%。仪器对偏振和大气顶部反射光偏振的敏感度是系统不确定性的来源。在本文中,我们针对CLARREO基准测试和参考互校准观测值估计了由于偏振效应而引起的辐射误差。来自大气科学的反射偏振和各向异性的数据,加上星载偏振计激光雷达(PARASOL)的观测数据,已与地球采样的轨道建模结合使用。对于CLARREO基准数据,我们对90°倾角的极轨使用了模拟的年度最低点采样,对于JPSS上的跨轨传感器(如CERES和VIIRS)进行互校准,我们对了在轨匹配数据采样。在一个完整的太阳年度内选定的PARASOL数据提供了可见(VIS)光谱范围内的极化参数。为了估计近红外(NIR)光谱范围内的极化,我们使用了辐射传输模型。我们的结果表明,为了将归因于极化的误差贡献限制在允许的总数的一半,在从VIS到NIR的光谱范围内,CLARREO反射太阳能仪器对极化的灵敏度不应超过0.5%。

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