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首页> 外文期刊>The Astrophysical journal >NEW INSIGHTS ON INTERSTELLAR GAS-PHASE IRON
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NEW INSIGHTS ON INTERSTELLAR GAS-PHASE IRON

机译:星际气态铁的新见解

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In this paper we report on the gas-phase abundance of singly ionized iron (Fe Ⅱ) for 51 lines of sight, using data from FUSE. Fe n column densities are derived by measuring the equivalent widths of several UV absorption lines and subsequently fitting those to a curve of growth. Our derivation of Fe Ⅱ column densities and abundances creates the largest sample of iron abundances in moderately to highly reddened lines of sight explored with FUSE, lines of sight that are on average more reddened than lines of sight in previous Copernicus studies. We present three major results. First, we observe the well-established correlation between iron depletion and 〈n_H〉 and also find trends between iron depletion and other line-of-sight parameters [e.g., f(H_2), E_(B-V)], and we examine the significance of these trends. Of note, a few of our lines of sight probe larger densities than previously explored and we do not see significantly enhanced depletion effects. Second, we present two detections of an extremely weak Fe n line at 1901.773 A in the archival STIS spectra of two lines of sight (HD 24534 and HD 93222). We compare these detections to the column densities derived through FUSE spectra and comment on the line's f- value and utility for future studies of Fe Ⅱ. Finally, we present strong anecdotal evidence that the Fe Ⅱ f-values derived empirically through FUSE data are more accurate than previous values that have been theoretically calculated, with the probable exception of f_(1112).
机译:在本文中,我们使用FUSE的数据报告了单离子化铁(FeⅡ)在51个视线中的气相丰度。通过测量几条紫外线吸收线的等效宽度,然后将其拟合至生长曲线,可以得出Fe n柱密度。我们得出的FeⅡ柱密度和丰度在FUSE探索的中等至高度变红的视线中创造了最大的铁丰度样本,这些视线平均比以前的哥白尼研究中的视线变红。我们提出了三个主要结果。首先,我们观察到铁消耗与之间的公认的相关性,并且还发现铁消耗与其他视线参数[例如,f(H_2),E_(BV)]之间的趋势,并检验其重要性。这些趋势。值得注意的是,我们的某些视线探测到的密度比以前探索的要大,我们看不到耗尽效应显着增强。其次,我们在两条视线(HD 24534和HD 93222)的档案STIS光谱中两次检测到1901.773 A处极弱的Fe n线。我们将这些检测结果与通过FUSE光谱得出的色谱柱密度进行了比较,并评论了该谱线的f值和对FeⅡ的进一步研究的实用性。最后,我们提供了有力的传闻证据,表明通过FUSE数据凭经验得出的FeⅡf值比从理论上计算出的先前值更准确,但f_(1112)可能例外。

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