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首页> 外文期刊>Astronomy and astrophysics >Metals and dust in the neutral ISM: the Galaxy, Magellanic Clouds, and damped Lyman- α absorbers
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Metals and dust in the neutral ISM: the Galaxy, Magellanic Clouds, and damped Lyman- α absorbers

机译:中性ISM中的金属和尘埃:银河,麦哲伦星云和阻尼Lyman- α吸收器

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Context. The presence of dust in the neutral interstellar medium (ISM) dramatically changes the metal abundances that we measure. Understanding the metal content in the neutral ISM, and a direct comparison between different environments, has been hampered to date because of the degeneracy to the observed ISM abundances caused by the effects of metallicity, the presence of dust, and nucleosynthesis. Aims. We study the metal and dust content in the neutral ISM consistently in different environments, and assess the universality of recently discovered sequences of relative abundances. We also intend to assess the validity of [Zn/Fe] as a tracer of dust in the ISM. This has recently been cast into doubt based on observations of stellar abundances, and needs to be addressed before we can safely use it to study the ISM. Methods. In this letter we present a simple comparison of relative abundances observed in the neutral ISM in the Galaxy, the Magellanic Clouds, and damped Lyman- α absorbers (DLAs). The main novelty in this comparison is the inclusion of the Magellanic Clouds. Results. The same sequences of relative abundances are valid for the Galaxy, Magellanic Clouds, and DLAs. These sequences are driven by the presence of dust in the ISM and seem “universal”. Conclusions. The metal and dust properties in the neutral ISM appear to follow a similar behaviour in different environments. This suggests that a dominant fraction of the dust budget is built up from grain growth in the ISM depending of the physical conditions and regardless of the star formation history of the system. In addition, the DLA gas behaves like the neutral ISM, at least from a chemical point of view. Finally, despite the deviations in [Zn/Fe] observed in stellar abundances, [Zn/Fe] is a robust dust tracer in the ISM of different environments, from the Galaxy to DLAs.
机译:上下文。中性星际介质(ISM)中灰尘的存在极大地改变了我们测量的金属丰度。迄今为止,由于金属性,粉尘的存在和核合成的影响导致所观察到的ISM丰度下降,因此了解中性ISM中的金属含量以及在不同环境之间进行直接比较一直受阻。目的我们在不同环境中一致地研究中性ISM中的金属和灰尘含量,并评估最近发现的相对丰度序列的普遍性。我们还打算评估[Zn / Fe]作为ISM中粉尘示踪剂的有效性。最近,基于恒星丰度的观察结果使人们对此产生怀疑,在我们可以安全地使用它研究ISM之前,需要解决该问题。方法。在这封信中,我们对星系,麦哲伦云和阻尼莱曼-α吸收剂(DLA)中性ISM中观察到的相对丰度进行了简单比较。这种比较的主要新颖之处是麦哲伦星云的加入。结果。相同的相对丰度序列对银河系,麦哲伦云和DLA有效。这些顺序是由ISM中灰尘的存在驱动的,并且似乎是“普遍的”。结论。中性ISM中的金属和尘埃特性在不同环境中似乎遵循相似的行为。这表明,取决于物理条件和系统的恒星形成历史,粉尘预算的主要部分是由ISM中的晶粒生长建立的。此外,至少从化学观点来看,DLA气体的行为类似于中性ISM。最后,尽管在恒星丰度中观察到了[Zn / Fe]的偏差,但是[Zn / Fe]在从星系到DLA的不同环境的ISM中都是一种强大的除尘示踪剂。

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