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The dynamical evolution of galaxy clusters taking into account the deceleration of disk galaxies by the gaseous component of the cluster

机译:考虑到星系团气态成分对盘状星系的减速作用,星系团的动态演化

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摘要

Numerical simulations of the dynamical evolution of a galaxy cluster in the framework of the N-body problem taking into account dark matter are presented. These simulations are aimed at studying the role of intergalactic gas in the cluster (the ICM) in the formation of a central, supermassive cD galaxy. The numerical models indicate that deceleration of the galaxies by intergalactic gas supports the observed high temperature of this gas, and accelerates the formation of a supermassive cD galaxy in the cluster core. The accretion of interstellar gas by the cluster core can support a high accretion rate by the central, supermassive black hole associated with the nucleus of the cD galaxy. As a result, this nucleus harbors a bright quasar. The mass of the black hole can grow with time to values 10~(10)M_⊙, as are observed for the brightest quasars.
机译:提出了在考虑暗物质的N体问题框架内星系团动态演化的数值模拟。这些模拟旨在研究星团中的星际气体(ICM)在中央超大规模cD星系形成中的作用。数值模型表明,星系间气体对星系的减速支持了这种气体的高温,并加速了星团核心中超大规模cD星系的形成。星团气体通过星团核心的积聚可以支持与cD星系核相关的中央超大质量黑洞的高积聚率。结果,该核具有明亮的类星体。如最亮的类星体所观察到的,黑洞的质量可以随时间增长到10〜(10)M_⊙。

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