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INTERNAL ALIGNMENT OF THE HALOS OF DISK GALAXIES IN COSMOLOGICAL HYDRODYNAMIC SIMULATIONS

机译:宇宙动力学模拟中盘状星系晕的内部校正

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Seven cosmological hydrodynamic simulations of disk galaxy formation are analyzed to determine the alignment of the disk within the dark matter halo and the internal structure of the halo. We find that the orientation of the outer halo, beyond ~0.1 r_(vir), is unaffected by the presence of the disk. In contrast, the inner halo is aligned such that the halo minor axis aligns with the disk axis. The relative orientations of these two regions of the halo are uncorrelated. The alignment of the disk and inner halo appears to take place simultaneously through their joint evolution. The lack of connection between these two regions of the halo should be taken into account when modeling tidal streams in the halos of disk galaxies and when calculating intrinsic alignments of disk galaxies based on the properties of dark matter halos.
机译:分析了盘状星系形成的七个宇宙流体力学模拟,以确定了盘在暗物质晕和晕圈内部结构中的排列。我们发现,外部光晕的方向(超过〜0.1 r_(vir))不受磁盘存在的影响。相反,内部光晕对齐,以使光晕短轴与磁盘轴对齐。光环的这两个区域的相对方向是不相关的。磁盘和内部光环的对齐似乎是通过它们共同演化而同时发生的。在对盘状星系光环中的潮汐流进行建模时以及在根据暗物质晕的性质计算盘状星系的固有排列时,应考虑到晕圈这两个区域之间缺乏连接。

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