论文标题

香肠和土豆泥:银河厚的圆盘的双重起源和来自富含气的盖亚塞拉多斯 - 苏苏use的双光。

Sausage & Mash: The dual origin of the Galactic thick disc and halo from the gas-rich Gaia-Enceladus-Sausage merger

论文作者

Grand, Robert J. J., Kawata, Daisuke, Belokurov, Vasily, Deason, Alis J., Fattahi, Azadeh, Fragkoudi, Francesca, Gómez, Facundo A., Marinacci, Federico, Pakmor, Rüdiger

论文摘要

我们分析了一组宇宙学磁性 - 氢动力学模拟,这些模拟的形成是银河系星系,这些星系具有与盖亚数据中所谓的“ Gaia Sausage”相似的径向径向偏射的各向异性恒星光环成分。我们研究了香肠祖细胞(Gaia-cenceladus-sausage,GES)对类似于银河厚的圆盘和内部恒星光环的主要银河系组成的形成。我们发现,GES合并很可能是气体丰富的,并为合并引起的集中浓缩的恒星爆炸贡献了10-50美元的气体,从而导致紧凑的,旋转的厚度厚的厚盘的快速形成,占据了典型的化学厚度化学丰度空间的化学厚盘区域。我们发现有证据表明,气体富合并将星系的原始散发加热到散射的恒星上,使它们的旋转速度和金属性正相关,从而促进了将银河厚厚的圆盘连接到内部恒星光环。我们证明,原始 - 盖拉克斯的运动学加热水平与合并合并之前的运动学状态相关,祖细胞质量和合并的轨道偏心率相关。此外,我们表明合并的质量和时间可以从当地恒星中准确地推断出在反旋转轨道上。

We analyse a set of cosmological magneto-hydrodynamic simulations of the formation of Milky Way-mass galaxies identified to have a prominent radially anisotropic stellar halo component similar to the so-called "Gaia Sausage" found in the Gaia data. We examine the effects of the progenitor of the Sausage (the Gaia-Enceladus-Sausage, GES) on the formation of major galactic components analogous to the Galactic thick disc and inner stellar halo. We find that the GES merger is likely to have been gas-rich and contribute 10-50$\%$ of gas to a merger-induced centrally concentrated starburst that results in the rapid formation of a compact, rotationally supported thick disc that occupies the typical chemical thick disc region of chemical abundance space. We find evidence that gas-rich mergers heated the proto-disc of the Galaxy, scattering stars onto less-circular orbits such that their rotation velocity and metallicity positively correlate, thus contributing an additional component that connects the Galactic thick disc to the inner stellar halo. We demonstrate that the level of kinematic heating of the proto-galaxy correlates with the kinematic state of the population before the merger, the progenitor mass and orbital eccentricity of the merger. Furthermore, we show that the mass and time of the merger can be accurately inferred from local stars on counter-rotating orbits.

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