论文标题
银河系的暗物质光环中的倾斜
A Tilt in the Dark Matter Halo of the Galaxy
论文作者
论文摘要
对恒星光环的最新观察发现了古老的合并盖亚 - 苏维奇 - 塞拉德斯的碎片,估计发生了〜8 Gyr。后续研究已将GSE与恒星光环中的大规模倾斜相关联,该倾斜度将两个众所周知的恒星过度固定在星系的对角线相对的八分之一(Hercules-aquila云和处女座的过度密度; HAC和VOD)。在本文中,我们研究了银河光环中几个Gyr持续存在这种无混合的合并碎片的合理性。我们采用了Naidu等人的模拟恒星光环。 (2021),它重现了合并残留物的几个关键特性,包括大规模倾斜。通过整合这些模拟恒星光环颗粒的轨道,我们表明采用球形光环电位会导致不对称的快速相混合。但是,采用倾斜的光环电位可以保留许多GYR的恒星光环中的初始不对称性。即使将现实的生长磁盘添加到电势中,也可以保留不对称性。这些结果表明,HAC和VOD是与GSE相关的长寿命结构,并且银河系的暗物质光环相对于磁盘倾斜并沿HAC-VOD方向对齐。这种光盘错位在现代宇宙学模拟中很常见。最后,我们研究了由高度径向轨道组成的倾斜全球光环,研究本地和全球恒星光环之间的关系。我们发现,由于银河系中心的位移,本地光环提供了全球光环的动态偏见。
Recent observations of the stellar halo have uncovered the debris of an ancient merger, Gaia-Sausage-Enceladus, estimated to have occurred ~8 Gyr ago. Follow-up studies have associated GSE with a large-scale tilt in the stellar halo that links two well-known stellar over-densities in diagonally opposing octants of the Galaxy (the Hercules-Aquila Cloud and Virgo Overdensity; HAC and VOD). In this paper, we study the plausibility of such unmixed merger debris persisting over several Gyr in the Galactic halo. We employ the simulated stellar halo from Naidu et al. (2021), which reproduces several key properties of the merger remnant, including the large-scale tilt. By integrating the orbits of these simulated stellar halo particles, we show that adoption of a spherical halo potential results in rapid phase mixing of the asymmetry. However, adopting a tilted halo potential preserves the initial asymmetry in the stellar halo for many Gyr. The asymmetry is preserved even when a realistic growing disk is added to the potential. These results suggest that HAC and VOD are long-lived structures that are associated with GSE and that the dark matter halo of the Galaxy is tilted with respect to the disk and aligned in the direction of HAC-VOD. Such halo-disk misalignment is common in modern cosmological simulations. Lastly, we study the relationship between the local and global stellar halo in light of a tilted global halo comprised of highly radial orbits. We find that the local halo offers a dynamically biased view of the global halo due to its displacement from the Galactic Center.