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COLLISION TOMOGRAPHY: PHYSICAL PROPERTIES OF POSSIBLE PROGENITORS OF THE ANDROMEDA STELLAR STREAM

机译:碰撞断层摄影:AndROMEDA星状流的可能祖细胞的物理特性

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To unveil a progenitor of the Andromeda Giant Stellar Stream, we investigate the interaction between an accreting satellite galaxy and the Andromeda Galaxy using an N-body simulation. We perform a comprehensive exploration of the properties of the progenitor dwarf galaxy, using 247 models of varying mass, mass distribution, and size. We show that the binding energy of the progenitor is the crucial parameter in reproducing the Andromeda Giant Stellar Stream and the shell-like structures surrounding the Andromeda Galaxy. As a result of the simulations, the progenitor must satisfy a simple scaling relation between the core radius, the total mass and the tidal radius. Using this relation, we successfully constrain the physical properties of the progenitors to have masses ranging from to and central surface densities?around . A detailed comparison between our result and the nearby observed galaxies indicates that possible progenitors of the Andromeda Giant Stellar Stream include a dwarf elliptical galaxy, a dwarf irregular galaxy, and a small spiral galaxy.
机译:为了揭示仙女座巨星流的祖先,我们使用N体模拟研究了正在繁殖的卫星星系与仙女座星系之间的相互作用。我们使用质量,质量分布和大小不同的247个模型对祖先矮星系的属性进行了全面的探索。我们表明,祖细胞的结合能是再现仙女座巨星流和仙女座星系周围壳状结构的关键参数。作为模拟的结果,祖先必须满足岩心半径,总质量和潮汐半径之间的简单比例关系。利用这种关系,我们成功地限制了祖细胞的物理性质,使其质量范围从到,中心表面密度在左右。我们的结果与附近观测到的星系之间的详细比较表明,仙女座巨型恒星流的可能祖先包括矮椭圆形星系,矮不规则星系和小旋涡星系。

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