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INTERSTELLAR IRON AND SILICON DEPLETIONS IN TRANSLUCENT SIGHT LINES

机译:半透明视线中的星际铁和硅损耗

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We report interstellar Fe II and Si II column densities toward six translucent sight lines (A_V approx > 1) observed with the Space Telescope Imaging Spectrograph (STIS). The abundances were determined from the absorption of Si II] at 2335 A, and several weak Fe transitions including the first reported detections of the λ2234 line. We derive an empirical f-value for the FeII λ2234 transition of log (fλ) = -1.54 ± 0.05. The observed sight lines sample a variety of extinction characteristics as indicated by their R_V values, which range from 2.6 to 5.8. The dust-phase abundances of both Si and Fe are positively correlated with the small-grain population (effective radii smaller than a few hundred μm) toward the targets. The physical conditions along the sight lines suggest that this relationship may be due to differences in the survival of small particles in some interstellar environments. The chemical composition of the small grains could either resemble dust mantles or be silicate-rich.
机译:我们报告了通过太空望远镜成像光谱仪(STIS)观测到的朝向六个半透明视线(A_V大约> 1)的星际Fe II和Si II列密度。丰度由2335 A处的Si II]吸收以及一些弱的Fe跃迁确定,包括首次报道的λ2234谱线检测。我们得出了对数的FeIIλ2234跃迁的经验f值(fλ)= -1.54±0.05。观察到的视线采样了各种消光特性,如它们的R_V值所指示,范围为2.6至5.8。 Si和Fe的粉尘相丰度与朝向目标的小颗粒种群(有效半径小于几百微米)呈正相关。视线沿线的物理条件表明,这种关系可能是由于某些星际环境中小颗粒的生存能力不同所致。小颗粒的化学成分可能类似于尘土幔,或者富含硅酸盐。

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