论文标题

银河系的外壳结构揭示了径向碰撞的时间

The Milky Way's Shell Structure Reveals the Time of a Radial Collision

论文作者

Donlon II, Thomas, Newberg, Heidi Jo, Sanderson, Robyn, Widrow, Lawrence M.

论文摘要

我们首次以银河系来识别壳结构。我们使用Sloan Digital Sky Survey,Gaia和Lamost数据发现了处女座过度密度(VOD)区域的2个壳和2个壳。这些壳星是先前鉴定为处女座径向合并(VRM)的子结构的子集。这些壳的定时论点表明,它们的祖细胞矮星系穿过银河系中心2.7 +/- 0.2 Gyr。基于碰撞时间,VRM也可能与在磁盘和/或飞溅的垂直运动中产生相位空间螺旋的现象有关,并且可能导致内部磁盘中的恒星形成。 我们分析了径向合并N体模拟集合中的相混合,并发现与银河系中心碰撞后5 GYR中观察到的壳结构相似。用于计算VRM合并时间的方法能够可靠地恢复这些模拟的正确合并时间。 先前的工作支持了VRM和Gaia香肠/Gaia-ceceladus合并相同的想法。但是,盖亚香肠被普遍认为是8--11 Gyr旧。如果祖先越过病毒半径时,较大的年龄与较大的年龄相关联,则可以调和不同的年龄。我们不限制祖先绑定到银河系的时间。或者,盖亚香肠可能比以前想象的要年轻。

We identify shell structures in the Milky Way for the first time. We find 2 shells in the Virgo Overdensity (VOD) region and 2 shells in the Hercules Aquila Cloud (HAC) region using Sloan Digital Sky Survey, Gaia, and LAMOST data. These shell stars are a subset of the substructure previously identified as the Virgo Radial Merger (VRM). Timing arguments for these shells indicate that their progenitor dwarf galaxy passed through the Galactic center 2.7 +/- 0.2 Gyr ago. Based on the time of collision, it is also possible that the VRM is related to the phenomenon that created phase-space spirals in the vertical motion of the disk and/or the Splash, and could have caused a burst of star formation in the inner disk. We analyze phase mixing in a collection of radial merger N-body simulations, and find that shell structure similar to that observed in Milky Way data disappears by 5 Gyr after collision with the Galactic center. The method used to calculate the merger time of the VRM was able to reliably recover the correct merger times for these simulations. Previous work supports the idea that the VRM and the Gaia Sausage/Gaia-Enceladus Merger are the same. However, the Gaia Sausage is widely believed to be 8--11 Gyr old. The disparate ages could be reconciled if the larger age is associated with an infall time when the progenitor crossed the virial radius; we do not constrain the time at which the progenitor became bound to the Milky Way. Alternatively, the Gaia Sausage could be younger than previously thought.

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