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首页> 外文期刊>Solar physics >Elemental Abundances in the Solar Corona as Measured by the X-ray Solar Monitor Onboard Chandrayaan-1
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Elemental Abundances in the Solar Corona as Measured by the X-ray Solar Monitor Onboard Chandrayaan-1

机译:通过Chandrayaan-1机载X​​射线太阳监测仪测量的太阳日冕中的元素丰度

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摘要

The X-ray Solar Monitor (XSM) on the Indian lunar mission Chandrayaan-1 was flown to complement lunar elemental abundance studies by the X-ray fluorescence experiment C1XS. XSM measured the ≈1.8 - 20 keV solar X-ray spectrum during its nine months of operation in lunar orbit. The soft X-ray spectra can be used to estimate absolute coronal abundances using intensities of emission-line complexes and the plasma temperature derived from the continuum. The best estimates are obtained from the brightest flare observed by XSM: a C2.8-class flare. The well-known first-ionization potential (FIP) effect is observed; abundances are enhanced for the low-FIP elements Fe, Ca, and Si, while the intermediate-FIP element S shows values close to the photospheric abundance. The derived coronal abundances show a quasi-mass-dependent pattern of fractionation.
机译:印度X射线任务Chandrayaan-1的X射线太阳监测器(XSM)进行了飞行,以补充X射线荧光实验C1XS的月球元素丰度研究。 XSM在月球轨道运行9个月期间测量了≈1.8-20 keV太阳X射线光谱。可以使用软X射线光谱使用发射谱线配合物的强度和从连续体得出的等离子体温度来估算绝对冠冕丰度。最佳估计是从XSM观察到的最明亮的耀斑获得的:C2.8级耀斑。观察到众所周知的第一电离势(FIP)效应。低FIP元素Fe,Ca和Si的丰度提高了,而中间FIP元素S的值接近光球丰度。衍生的冠状丰度显示了一种与质量有关的分馏模式。

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