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The seeds of rich galaxy clusters in the Universe

机译:宇宙中丰富的银河星团的种子

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The discovery of a population of young galaxies at a redshift when the Universe was about a tenth of its current age has shed new light on the question of when and how galaxies formed. Within the context of popular models, this is the population of primeval galaxies that built themselves up to the size of present-day galaxies through the process of repeated mergers called hierarchical clustering. But the recent detection of a large concentration of these primeval galaxies appears to be incompatible with hierarchical clustering models, which generally predict that clusters of this size are fully formed later in time. Here we use a combination of theoretical techniques—semi-analytic modelling and n-body simulations—to show that such large concentrations should be quite common in a universe dominated by cold dark matter, and that they are the progenitors of the rich galaxy clusters seen today. We predict the clustering properties of primeval galaxies which should, when compared with data that will be collected in the near future, test our current understanding of galaxy formation within the framework of a universe dominated by cold dark matter.
机译:当宇宙大约是其当前年龄的十分之一时,发现一个年轻的星系处于红移状态,这为星系何时以及如何形成的问题提供了新的思路。在流行模型的背景下,这就是原始星系的总数,它们通过称为“层次聚类”的重复合并过程,逐渐发展到如今的星系大小。但是最近发现的这些原始星系的高浓度似乎与分层聚类模型不兼容,该模型通常预测此大小的聚类会在稍后的时间完全形成。在这里,我们结合了半解析模型和n体模拟等理论技术,证明了如此高的浓度在以冷暗物质为主导的宇宙中应该是很普遍的,并且它们是所见到的丰富星系团的前身今天。我们预测了原始星系的聚类特性,与不久的将来收集的数据相比,这些特性将检验我们对以冷暗物质为主的宇宙框架内星系形成的当前理解。

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