论文标题

对银河系的径向和紧凑的恒星光环组装的宇宙学见解

Cosmological insights into the assembly of the radial and compact stellar halo of the Milky Way

论文作者

Elias, Lydia M., Sales, Laura V., Helmi, Amina, Hernquist, Lars

论文摘要

使用Gaia DR2的最新研究已经确定了在银河系历史(MW)的大规模合并,其碎片明显径向且反射。这一事件被称为Gaia-cenceladus/Gaia-Sausage(GE/GS),也被认为已建造了大多数内部恒星光环。我们使用宇宙流体动力模拟插图将此合并置于$λ$ CDM的背景下。从$ \ sim $ 150兆瓦类似物中,$ \ sim 80 \%$至少经历了一次与ge/gs相似的质量和插入时间的合并。在该样品中,有37个碎屑与GE/GS一样径向,我们将其配音为古代径向合并(臂)。反转盘在武器中并不罕见,$ 43 \%$在反旋转轨道上具有$ 40 \%$的碎片。但是,鉴于GE/GS碎片的紧凑性,鉴于其较大的$β$及其对恒星光环的实质性贡献,更难以再现。 ARM碎片的中间半径为r $ _ {*,deb} \ simeq 45 $ kpc,而GE/GS被认为主要包含在$ r \ sim 30 $ kpc之内。对于大多数MW类似物,需要一些合并来构建内部恒星光环,而ARM碎片仅占内积星的$ \ sim 12 \%$。令人鼓舞的是,我们发现一只既紧凑又占主导地位的手臂,使其成为我们最好的GE/GS类似物。有趣的是,此合并将大量星(m $ _*\ simeq1.5 \ times 10^9 m_ \ odot $)放在外光环中,这表明GE/GS的未发现部分可能正在等待检测。

Recent studies using Gaia DR2 have identified a massive merger in the history of the Milky Way (MW) whose debris is markedly radial and counterrotating. This event, known as the Gaia-Enceladus/Gaia-Sausage (GE/GS), is also hypothesized to have built the majority of the inner stellar halo. We use the cosmological hydrodynamic simulation Illustris to place this merger in the context of galaxy assembly within $Λ$CDM. From $\sim$150 MW analogs, $\sim 80 \%$ have experienced at least one merger of similar mass and infall time as GE/GS. Within this sample, 37 have debris as radial as that of the GE/GS, which we dub the Ancient Radial Mergers (ARMs). Counterrotation is not rare among ARMs, with $43 \%$ having $>40 \%$ of their debris in counterrotating orbits. However, the compactness inferred for the GE/GS debris, given its large $β$ and its substantial contribution to the stellar halo, is more difficult to reproduce. The median radius of ARM debris is r$_{*,deb}\simeq 45$kpc, while GE/GS is thought to be mostly contained within $r\sim 30$ kpc. For most MW analogs, a few mergers are required to build the inner stellar halo, and ARM debris only accounts for $\sim 12 \%$ of inner accreted stars. Encouragingly, we find one ARM that is both compact and dominates the inner halo of its central, making it our best GE/GS analog. Interestingly, this merger deposits a significant number of stars (M$_*\simeq1.5 \times 10^9 M_\odot$) in the outer halo, suggesting that an undiscovered section of GE/GS may await detection.

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