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The Spectral Irradiance Monitor (SIM): Early Observations

机译:光谱辐照度监控器(SIM):早期观察

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摘要

This paper presents and interprets observations obtained by the Spectral Irradiance Monitor (SIM) on the Solar Radiation and Climate Experiment (SORCE) over a time period of several solar rotations during the declining phase of solar cycle 23. The time series of visible and infrared (IR) bands clearly show significant wavelength dependence of these variations. At some wavelengths the SIM measurements are qualitatively similar to the Mg II core-to-wing ratio, but in the visible and IR they show character similar to the Total Solar Irradiance (TSI) variations. Despite this overall similarity, different amplitudes, phases, and temporal features are observed at various wavelengths. The TSI can be explained as a complex sum of the various wavelength components. The SIM observations are interpreted with the aid of solar images that exhibit a mixture of solar activity features. Qualitative analysis shows how the sunspots, faculae, plage, and active network provide distinct contributions to the spectral irradiance at different wavelengths, and ultimately, how these features combine to produce the observed TSI variations. Most of the observed variability appears to be qualitatively explained by solar surface features related directly to the magnetic activity.
机译:本文介绍并解释了光谱辐照度监控器(SIM)在太阳周期23的下降阶段中几次太阳旋转期间对太阳辐射和气候实验(SORCE)所获得的观测结果。可见和红外的时间序列( IR)波段清楚地显示了这些变化的显着波长依赖性。在某些波长下,SIM的测量在质量上与Mg II的芯翼比相似,但在可见光和红外下,它们显示出与总太阳辐照度(TSI)变化相似的特征。尽管具有总体上的相似性,但在各种波长下仍观察到不同的幅度,相位和时间特征。 TSI可以解释为各种波长分量的总和。 SIM观测是借助太阳图像来解释的,这些图像表现出太阳活动特征的混合。定性分析显示了黑子,斑点,斑块和活动网络如何为不同波长下的光谱辐照度提供独特的贡献,并最终说明了这些特征如何组合以产生观察到的TSI变化。大多数观测到的变异性似乎由与磁活动直接相关的太阳表面特征定性地解释。

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  • 来源
    《Solar Physics》 |2005年第2期|205-224|共20页
  • 作者单位

    Laboratory for Atmospheric and Space Physics University of Colorado;

    Laboratory for Atmospheric and Space Physics University of Colorado;

    Laboratory for Atmospheric and Space Physics University of Colorado;

    Laboratory for Atmospheric and Space Physics University of Colorado;

    Laboratory for Atmospheric and Space Physics University of Colorado;

    Laboratory for Atmospheric and Space Physics University of Colorado;

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