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Creation of a composite solar ultraviolet irradiance data set

机译:创建一个复合太阳能紫外线辐照度数据集

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Characterization of long-term solar ultraviolet (UV) irradiance variations is important for understanding the radiative forcing of Earth's atmosphere. Extending such a characterization to multidecadal timescales requires the merging of multiple satellite data sets. Currently available irradiance data sets show both absolute offsets and time-dependent differences that vary between spectral ranges. We have created a composite spectral UV irradiance data set with daily spectra covering the wavelength range 120–400 nm for the time period November 1978 to August 2005. A reference irradiance spectrum is used for normalization to remove absolute biases between instruments. We selected the best irradiance data set for each spectral and temporal interval based on intercomparisons between overlapping data sets and comparisons with proxy model predictions. The long-term behavior of the merged composite irradiance data set is consistent with expectations based on other solar activity indicators. There is no difference between the minimum values for solar cycles 21 and 22 within the uncertainty of the data, and the maximum irradiance values for cycle 23 are slightly lower than those observed for cycles 21 and 22. We also compare our composite data set with published synthetic irradiance data. These two data sets generally agree within ±2% over most spectral and temporal ranges. We hope to extend this data set in the future using measurements from the SORCE satellite.
机译:长期太阳紫外线的特性(UV)辐照度的变化是很重要的理解地球的辐射强迫的的气氛。数十年时间尺度需要合并多个卫星数据集。辐照度数据集显示两个绝对的补偿和不同时间的差异光谱范围。光谱与日常紫外线辐照度数据集光谱的波长范围120 - 400 nm时间1978年11月至2005年8月。用于参考光谱辐照度标准化消除之间的绝对偏差仪器。每个光谱和时间间隔的基础重叠的数据集之间的相互比对与代理和比较模型的预测。合并后的复合材料的长期行为辐照度数据集是一致的基于其他太阳活动的预期指标。最小值为太阳周期21和22数据的不确定性,最大辐照度值周期23略低21和22比观察周期。比较我们的综合数据集出版综合辐照度数据。普遍认为在大多数光谱和在±2%时间范围。在未来使用测量的比照卫星。

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