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Flare irradiance spectral model (FISM): Daily component algorithms and results

机译:火炬辐照光谱模型(FISM):每日组件算法和结果

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The solar photon output from the Sun was once thought to be constant but is now known to vary considerably over timescales from seconds during solar flares to years due to the solar cycle. This is especially true in the wavelengths shorter than 208 nm (Al ionization edge), where measurements and models of the solar irradiance at these short wavelengths are needed. The time-variant solar irradiance drives physical changes in the Earth's atmosphere that can affect many things including GPS accuracy and satellite drag rates. The Flare Irradiance Spectral Model (FISM) is an empirical model that estimates the solar irradiance at wavelengths from 0.1 to 190 nm at 1 nm resolution with a time cadence of 60 s. This is a high enough temporal resolution to model variations due to solar flares, where few accurate measurements at these wavelengths exist, as well as the solar cycle and solar rotation variations. The modeling of the FISM daily component, including the solar irradiance variations due to the solar cycle and the solar rotation, is the topic of this paper. The daily component algorithms are given, and results and comparisons of the daily component demonstrate that the FISM estimations agree within the stated uncertainties to the various measurements of the solar VUV irradiance. A third type of event that causes sudden changes in the solar irradiance is solar flares. The FISM modeling of the variations in the solar irradiance due to solar flares is the topic of the second paper.
机译:曾经认为来自太阳的太阳光子输出是恒定的,但现在已知随着时间的变化,从太阳耀斑的几秒钟到由于太阳周期的几年而变化很大。在短于208 nm的波长(Al电离边缘)时,尤其如此,需要在这些短波长下测量和辐照太阳光。随时间变化的太阳辐照度会驱动地球大气的物理变化,从而可能影响许多因素,包括GPS精度和卫星阻力率。耀斑辐照光谱模型(FISM)是一种经验模型,它以1 s的分辨率和60 s的时间节奏估算从0.1到190 nm的波长处的太阳辐照度。这是一个足够高的时间分辨率,可以对由于太阳耀斑引起的变化建模,因为太阳耀斑在这些波长下几乎没有准确的测量值,以及太阳周期和太阳旋转变化。本文的主题是FISM日组成部分的建模,包括由于太阳周期和太阳旋转引起的太阳辐照度变化。给出了每日成分算法,并且每日成分的结果和比较表明,FISM估计值在规定的不确定性范围内与太阳VUV辐照度的各种测量值吻合。导致太阳辐照度突然变化的第三种事件是太阳耀斑。第二篇论文的主题是对由于太阳耀斑引起的太阳辐照度变化进行FISM建模。

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