论文标题

从局部到遥远星系的金属的尘埃耗竭:ISM中特殊的核合成效应和谷物生长

Dust depletion of metals from local to distant galaxies I: Peculiar nucleosynthesis effects and grain growth in the ISM

论文作者

Konstantopoulou, Christina, De Cia, Annalisa, Krogager, Jens-Kristian, Ledoux, Cédric, Noterdaeme, Pasquier, Fynbo, Johan P. U., Heintz, Kasper E., Watson, Darach, Andersen, Anja C., Ramburuth-Hurt, Tanita, Jermann, Iris

论文摘要

星际介质(ISM)中可观察的气相缺少大量金属,因为它们被掺入尘土晶粒中,这是一种称为粉尘耗尽的现象。 ISM中尘埃耗竭的研究对于研究金属和宇宙灰尘的起源和演变很重要。在这里,我们的目的是表征从银河系到遥远星系的几种金属的尘埃耗竭。我们从文献中的吸收线光谱中收集了ISM金属柱密度,此外,我们从70个阻尼的Lyman-$α$吸收仪(DLAS)的样品中确定了Ti和Ni柱密度,向类星体观察到,用UVES/VLT观察到。 We use ISM relative abundances to estimate the dust depletion of 18 metals (C, P, O, Cl, Kr, S, Ge, Mg, Si, Cu, Co, Mn, Cr, Ni, Al, Ti, Zn and Fe) for different environments (the Milky Way, the Magellanic Clouds (MCs), DLAs towards quasars and towards gamma-ray bursts).我们观察到每种金属的耗竭与尘埃耗竭的强度之间的线性关系,我们在观察到的[Zn/fe]中追踪。在MC的中性ISM中,我们发现与线性相距的小偏差是$α$元素Ti,mg,s和MN的不足的过多偏差。如果我们假设样品中对MCS观察到的所有OB恒星都具有$α$ - 元素的增强和MN的渗透度不足,那么偏差就会消失。这可能意味着MC最近在$α$元素中富集,这可能是由于最近的恒星形成爆发。从低金属性QSO-DLA到银河系的金属的耗尽序列的观察到的强相关性表明,宇宙尘埃具有共同的起源,与恒星形成史无关,这在这些不同的星系之间差异很大。这支持谷物在ISM中的重要性,作为粉尘生产的重要过程。

Large fractions of metals are missing from the observable gas-phase in the interstellar medium (ISM) because they are incorporated into dust grains, a phenomenon called dust depletion. The study of dust depletion in the ISM is important to investigate the origin and evolution of metals and cosmic dust. Here we aim at characterizing the dust depletion of several metals from the Milky Way to distant galaxies. We collect ISM metal column densities from absorption-line spectroscopy in the literature, and in addition, we determine Ti and Ni column densities from a sample of 70 damped Lyman-$α$ absorbers (DLAs) towards quasars, observed with UVES/VLT. We use ISM relative abundances to estimate the dust depletion of 18 metals (C, P, O, Cl, Kr, S, Ge, Mg, Si, Cu, Co, Mn, Cr, Ni, Al, Ti, Zn and Fe) for different environments (the Milky Way, the Magellanic Clouds (MCs), DLAs towards quasars and towards gamma-ray bursts). We observe linear relations between the depletion of each metal and the strength of dust depletion, which we trace with the observed [Zn/Fe]. In the neutral ISM of the MCs we find small deviations from linearity observed as an overabundance of the $α$-elements Ti, Mg, S and an underabundance of Mn. The deviations disappear if we assume that all OB stars observed towards the MCs in our sample have an $α$-element enhancement and Mn underabundance. This may imply that the MCs have been recently enriched in $α$-elements, potentially due to recent bursts of star formation. The observed strong correlations of the depletion sequences of the metals all the way from low metallicity QSO-DLAs to the Milky Way suggest that cosmic dust has a common origin, independently of the star formation history, which varies significantly between these different galaxies. This supports the importance of grain growth in the ISM as a significant process of dust production.

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