论文标题

组和簇中的化学富集

Chemical enrichment in groups and clusters

论文作者

Mernier, François, Biffi, Veronica

论文摘要

作为尘埃,岩石行星甚至复杂寿命的基础,化学元素比氢(H)和氦气(HE)(称为“金属”)的化学元素在我们的宇宙及其进化中起着至关重要的作用。最多可以通过FE和NI,这些金属是由恒星和恒星残留物通过核融合而产生的,并将被驱逐到其周围环境中,以浓缩新的恒星一代。然而,一个壮观的发现是,这些处理的元素甚至在恒星系统之外,特别是在早期型星系周围的热,X射线氛围和遍布的星系簇和群中。因此,这些大型结构是我们宇宙丰富历史的综合历史的显着化石记录。在本章中,我们简要讨论了该集群内或组内培养基(ICM)的化学特性。在介绍了化学丰度的概念并回顾了哪些出色的来源产生哪些元素之后,我们回顾了从ICM观察结果中得出丰度测量的方法,并详细介绍了一些在宇宙结构的数值流体动力学模拟中实现的化学模型。特别是,我们探讨了X射线观测和数值模拟之间的协同作用如何帮助我们理解(i)大部分富集发生的宇宙时代,(ii)这些恒星源的物理学负责这种富集的物理学,以及(iii)负责金属扩散和混合外部星系的金属扩散和混合的主要机制。

As building blocks of dust, rocky planets, and even complex life, the chemical elements heavier than hydrogen (H) and helium (He) - called "metals" in astronomy - play an essential role in our Universe and its evolution. Up to Fe and Ni, these metals are known to be created by stars and stellar remnants via nuclear fusion and to be ejected into their immediate surroundings to enrich new stellar generations. A spectacular finding, however, is that these processed elements are found even outside stellar systems, in particular in the hot, X-ray atmospheres surrounding early-type galaxies and pervading galaxy clusters and groups. These large-scales structures are thus a remarkable fossil record of the integrated history of the enrichment of our Universe. In this Chapter, we briefly discuss the chemical properties of this intracluster - or intragroup - medium (ICM). After introducing the concept of chemical abundances, and recalling which stellar sources produce which elements, we review the method to derive abundance measurements from observations of the ICM and detail some chemical models implemented in numerical hydrodynamical simulations of cosmic structures. In particular, we explore how synergies between X-ray observations and numerical simulations help us to understand (i) the cosmic epoch at which the bulk of the enrichment occurred, (ii) the physics of these stellar sources responsible for this enrichment, and (iii) the main mechanisms responsible for metal diffusion and mixing outside galaxies.

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