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Formation of Galaxies in the Context of Gravitational Waves and Primordial Black Holes

机译:引力波和原始黑洞背景下的星系形成

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The recent discovery of gravitational waves has revolutionized our understanding of many aspects regarding how the universe works. The formation of galaxies stands as one of the most challenging problems in astrophysics. Regardless of how far back we look in the early universe, we keep discovering galaxies with supermassive black holes lurking at their centers. Many models have been proposed to explain the rapid formation of supermassive black holes, including the massive accretion of material, the collapse of type III stars, and the merger of stellar mass black holes. Some of these events give rise to the production of gravitational waves that could be detected by future generations of more sensitive detectors. Alternatively, the existence of these supermassive black holes can be explained in the context of primordial black holes. In this paper we discuss the various models of galaxy formation shedding light on the role that gravitational waves can play to test of the validity of some of these models. We also discuss the prospect of primordial black holes as a seeding constituent for galaxy formation.
机译:最近发现的引力波彻底改变了我们对宇宙工作原理的许多理解。星系的形成是天体物理学中最具挑战性的问题之一。不管我们在早期宇宙中有多远,我们都会不断发现在其中心潜伏着超大质量黑洞的星系。已经提出了许多模型来解释超大质量黑洞的迅速形成,包括物质的大量积聚,III型恒星的坍塌以及恒星质量黑洞的合并。这些事件中的一些会引起重力波的产生,这种重力波可以被下一代更灵敏的探测器探测到。或者,可以在原始黑洞的背景下解释这些超大质量黑洞的存在。在本文中,我们讨论了各种星系形成模型,这些模型说明了引力波可以用来检验其中某些模型的有效性。我们还讨论了原始黑洞作为星系形成的播种成分的前景。

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