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Probing the Merger History of Red Early-Type Galaxies with Their Faint Stellar Substructures

机译:用微弱的恒星子结构探测红色早期星系的合并历史

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Major and minor galaxy mergers form a large number of stellar substructures, ranging from kinematically decoupled cores in the central kpc to faint streams, shells, tails and rings in the far outer regions, as well as massive star clusters. We study the formation of these substructures using cosmological simulations with an efficient zoom-in technique. We analyze in particular the evolution of substructures, their transient or long-lived nature, and their survival to subsequent mergers. We also discuss which features can unambiguously probe past mergers, and which ones could have been produced by different evolutionary processes at high redshift. Faint stellar streams are found to be one of the most robust probes of past major and minor mergers. They can survive subsequent mergers, without having their morphological and photometrical properties dramatically modified. The numerous streams surrounding modem early-type galaxies hence likely trace merger events, and constrain the past occurrence of major and minor mergers, including their age and orbit.
机译:主要和次要的银河系合并构成大量恒星子结构,从中央核心KPC中的运动核,远外区域的微弱流,炮弹,尾部和环,以及大规模的恒星簇。我们使用具有高效缩放技术的宇宙学仿真研究这些子结构的形成。我们特别分析了子结构,瞬态或长期性质的演变,以及它们对后续合并的生存。我们还讨论了哪些功能可以明确地探测过去的合并,并且在高射频时可以通过不同的进化过程产生。发现微弱的恒星溪流是过去主要和小合并的最强大的探测之一。它们可以在随后的合并中存活,而不会显着修改它们的形态学和光学性质。围绕调制解调器早期星系的众多流可能跟踪合并事件,并限制过去发生的主要和轻微的并购,包括其年龄和轨道。

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