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首页> 外文期刊>The Astrophysical journal >ELEMENTAL ABUNDANCES AND IONIZATION STATES WITHIN THE LOCAL INTERSTELLAR CLOUD DERIVED FROM HUBBLE SPACE TELESCOPE AND FAR ULTRAVIOLET SPECTROSCOPIC EXPLORER OBSERVATIONS OF THE CAPELLA LINE OF SIGHT
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ELEMENTAL ABUNDANCES AND IONIZATION STATES WITHIN THE LOCAL INTERSTELLAR CLOUD DERIVED FROM HUBBLE SPACE TELESCOPE AND FAR ULTRAVIOLET SPECTROSCOPIC EXPLORER OBSERVATIONS OF THE CAPELLA LINE OF SIGHT

机译:从空间空间望远镜和远视紫外线的远视光谱观察到的局部星际云中的元素丰度和电离态

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We use ultraviolet spectra of Capella from the Hubble Space Telescope and Far Ultraviolet Spectroscopic Explorer satellites to study interstellar absorption lines from the Local Interstellar Cloud (LIC). Measurements of these lines are used to empirically determine the ionization states of carbon, nitrogen, and silicon in the LIC, for comparison with the predictions of theoretical photoionization models. We find that the observed ionization states are consistent with previously published photoionization predictions. Total abundances are determined for the elements mentioned above, and others, for comparison with solar abundances. Magnesium, aluminum, silicon, and iron are all depleted by at least a factor of 10 toward Capella. The abundances of carbon, nitrogen, and oxygen are essentially solar, although the error bars are large enough to also allow depletions of about a factor of 2 for these elements.
机译:我们使用来自哈勃太空望远镜的卡佩拉的紫外线光谱和远紫外线光谱浏览器卫星来研究本地星际云(LIC)的星际吸收线。这些线的测量值用于凭经验确定LIC中碳,氮和硅的电离状态,以便与理论光电离模型的预测进行比较。我们发现观察到的电离状态与先前发布的光电离预测一致。确定上述元素和其他元素的总丰度,以便与太阳丰度进行比较。镁,铝,硅和铁对Capella的消耗都至少减少了10倍。碳,氮和氧的丰度基本上是太阳能,尽管误差线足够大,以至于这些元素的损耗也约为2倍。

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