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Early Gas Stripping as the Origin of the Darkest Galaxies in the Universe

机译:早期的气提是宇宙中最黑暗的星系的起源

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摘要

The known galaxies most dominated by dark matter (Draco, Ursa Minor and Andromeda IX) are satellites of the Milky Way and the Andromeda galaxies. They are members of a class of faint galaxies, devoid of gas, known as dwarf spheroidals, and have by far the highest ratio of dark to luminous matter. None of the models proposed to unravel their origin can simultaneously explain their exceptional dark matter content and their proximity to a much larger galaxy. Here we report simulations showing that the progenitors of these galaxies were probably gas-dominated dwarf galaxies that became satellites of a larger galaxy earlier than the other dwarf spheroidals. We find that a combination of tidal shocks and ram pressure swept away the entire gas content of such progenitors about ten billion years ago because heating by the cosmic ultraviolet background kept the gas loosely bound: a tiny stellar component embedded in a relatively massive dark halo survived until today. All luminous galaxies should be surrounded by a few extremely dark-matter-dominated dwarf spheroidal satellites, and these should have the shortest orbital periods among dwarf spheroidals because they were accreted early.
机译:由暗物质(Draco,Ursa Minor和仙女座IX)最主要的已知星系是银河系和仙女座星系的卫星。它们是一类微弱的星系成员,不含气体,被称为矮球体,是暗物质和发光物质比例最高的一种。提出解开其起源的所有模型都无法同时解释其异常暗物质含量及其与更大星系的接近性。在这里,我们报告的模拟结果表明,这些星系的祖先可能是以气体为主的矮星系,这些星系比其他矮球体更早成为更大星系的卫星。我们发现,大约在一百亿年前,由于潮汐冲击和撞击压力的共同作用,这些祖细胞的全部气体含量被扫除,因为宇宙紫外线背景下的加热使气体松散地结合在一起:嵌入相对较大黑晕中的微小恒星成分得以幸存直到今天。所有的发光星系都应被一些极暗物质占主导的矮球体卫星所包围,并且这些矮星体中的轨道周期应该是最短的,因为它们早就被吸收。

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