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首页> 外文期刊>The Astrophysical journal >SOLAR ATMOSPHERIC ABUNDANCES AND ENERGY CONTENT IN FLARE-ACCELERATED IONS FROM GAMMA-RAY SPECTROSCOPY
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SOLAR ATMOSPHERIC ABUNDANCES AND ENERGY CONTENT IN FLARE-ACCELERATED IONS FROM GAMMA-RAY SPECTROSCOPY

机译:伽马射线光谱法测定耀斑加速离子中的太阳大气丰度和能量含量

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We used SMM gamma-ray data from 19 solar flares to study ambient elemental abundances in the solar atmosphere. We found that the abundance ratios of low FIP (first ionization potential) to high FIP elements are enhanced relative to photospheric abundances, but that the variability of these ratios from flare to flare is limited to a narrower range than that inferred from EUV and X-ray observations. The mean of the gamma-ray derived Mg/O (a low FIP to high FIP element abundance ratio) is coronal and the individual values are always higher than the photospheric Mg/O. The value of Ne/O (~0.25) is higher than the coronal value of 0.15 obtained from solar energetic particle data, but not inconsistent with some EUV and X-ray determinations. To avoid Ne/O higher than 0.3 a steep accelerated particle energy spectrum extending down to about 1 MeV per nucleon is needed. This implies that a large fraction of the available flare energy is contained in accelerated ions.
机译:我们使用了来自19个太阳耀斑的SMM伽玛射线数据来研究太阳大气中的环境元素丰度。我们发现,相对于光球丰度,低FIP(第一电离势)与高FIP元素的丰度比得到了提高,但是这些比值从耀斑到耀斑的变异性被限制在比EUV和X-推断的范围更窄的范围内。射线观测。伽马射线得出的Mg / O(低FIP与高FIP元素丰度比)的平均值是冠状的,并且各个值始终高于光球Mg / O。 Ne / O(〜0.25)的值高于从太阳高能粒子数据获得的冠冕值0.15,但与某些EUV和X射线测定并不矛盾。为了避免Ne / O高于0.3,需要一个陡峭的加速粒子能谱,向下扩展至每个核子约1 MeV。这意味着在加速离子中包含了很大一部分可用的火炬能量。

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