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Laboratory spectral calibration of the TanSat atmospheric carbon dioxide grating spectrometer

机译:涉思达大气二氧化碳光栅光谱仪的实验室光谱校准

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TanSat is a key satellite mission in the Chinese Earth Observation program and is designed to measure the global atmospheric column-averaged dry-air CO 2 mole fraction by measuring the visible and near-infrared solar-reflected spectra. The first Chinese super-high-resolution grating spectrometer for measuring atmospheric CO 2 is aboard TanSat. This spectrometer is a suite incorporating three grating spectrometers that make coincident measurements of reflected sunlight in the near-infrared CO 2 band near 1.61 and 2.06? μ m and in the molecular oxygen ( O 2 ) A-band at 0.76? μ m. The spectral resolving power ( λ ∕Δ λ ) values are ~19 ?000, ~12 ?800, and ~12 ?250 in the O 2 A-band, and the weak and strong absorption bands of CO 2 , respectively. This paper describes the prelaunch spectral calibration of the atmospheric carbon dioxide grating spectrometer aboard TanSat. Several critical aspects of the spectrometer, including the spectral resolution, spectral dispersion, and the instrument line shape function of each channel, which are directly related to producing the Level 1 products are evaluated in this paper. The instrument line shape function of the spectrometer is notably symmetrical and perfectly consistent across all channels in the three bands. The symmetry is better then 99.99?%, and the consistency in the worst case is better then 99.97?%, 99.98?%, and 99.98?% in the O 2 A, W CO 2 , and S CO 2 bands, respectively. The resulting variations in the spectral calibrations and the radiometric response errors are negligible. The spectral resolution characterizations meet the mission requirements. The spectral dispersions have excellent consistency in the spatial dimension of each band, and there is good linearity in the spectral dimension of each band. The RMS errors of the fitting residuals are 0.9, 1, and 0.7?pm in the O 2 A-band, the W CO 2 band, and the S CO 2 band, respectively. Taken together, these results suggest that the spectral characterizations of the spectrometer aboard TanSat meet the mission requirements.
机译:坦塔是中国地球观测计划中的一个关键卫星使命,旨在通过测量可见光和近红外太阳反射光谱来测量全球大气柱平均的干空二氧化碳二极管分数。第一中国超高分辨率光谱仪用于测量大气CO 2的差差。该光谱仪是一种包含三个光栅光谱仪的套件,该光谱光谱仪在近红外CO 2条带附近的近红外CO 2带内反射的阳光进行重合测量值。 μm和在分子氧(O 2)A波段0.76? μm。光谱分辨率(λ/Δλ)值是〜19 000,〜12?800,〜12?250分别在o 2 a频带中,以及CO 2的弱和强吸收带。本文介绍了丹丹型差管的大气二氧化碳光栅光谱仪的预振光谱校准。在本文中评估了光谱仪的几个关键方面,包括频谱分辨率,光谱分散和每个通道的仪表线形状与产生级别1产品有直接相关的仪表。光谱仪的仪表线形状函数在三个频段中的所有通道上均比对称且完美一致。对称性更好,然后在99.99?%,最坏情况下的一致性在O 2 A,W CO 2和S CO 2条带中分别更好。光谱校准和辐射判断误差的所得到的变化可以忽略不计。光谱分辨率特性符合任务要求。光谱分散体在每个频带的空间尺寸中具有优异的一致性,并且在每个频带的光谱尺寸中存在良好的线性性。拟合残留的RMS误差分别为0.9,1和0.7Ωpm,分别在o 2a频带,w co 2频带和s co 2带中。总之,这些结果表明,丹参差的光谱仪的光谱特征符合任务要求。

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