论文标题

银河系的扭曲的暗物质光环

The twisted dark matter halo of the Milky Way

论文作者

Shao, Shi, Cautun, Marius, Deason, Alis J., Frenk, Carlos S.

论文摘要

我们分析了类似于鹰宇宙流体动力学模拟的银河系(MW)的系统,以推断出MW的暗物质光环的可能结构。我们在模拟中鉴定了MW-MAS HAROE,其卫星星系具有与MW明亮卫星相似的动力学和空间分布,特别是该系统,其中大多数卫星(11中的8个)几乎具有co-Planar Orbits也垂直于中部Stellar Dist圆盘。我们发现,共同平面卫星的普通轨道平面的正常与宿主暗物质光环的次要轴很好地对准,中位错位角度仅为$ 17.3^\ circ $。基于此结果,我们推断出银河系暗物质的次轴指向$(l,b)=(182^\ circ,-2^\ circ)$,分别为22 $^\ circ $和43 $^\ circ $的68%和95%置信度的角度不确定性。因此,推断的MW光晕的次要轴位于恒星盘的平面上。但是,光环并非同源,其扁平和方向随半径而变化。光环的内部比外部圆形,并与恒星圆盘进行良好对准(这是光环的次要轴垂直于圆盘)。此外,光环曲折和次要轴的方向更改了$ 90^\ Circ $。这种扭曲发生在非常狭窄的径向范围内,并反映了将质量吸收到MW的丝状网络中的变化。

We analyse systems analogous to the Milky Way (MW) in the EAGLE cosmological hydrodynamics simulation in order to deduce the likely structure of the MW's dark matter halo. We identify MW-mass haloes in the simulation whose satellite galaxies have similar kinematics and spatial distribution to those of the bright satellites of the MW, specifically systems in which the majority of the satellites (8 out of 11) have nearly co-planar orbits that are also perpendicular to the central stellar disc. We find that the normal to the common orbital plane of the co-planar satellites is well aligned with the minor axis of the host dark matter halo, with a median misalignment angle of only $17.3^\circ$. Based on this result, we infer that the minor axis of the Galactic dark matter halo points towards $(l,b)=(182^\circ,-2^\circ)$, with an angular uncertainty at the 68 and 95 percentile confidence levels of 22$^\circ$ and 43$^\circ$ respectively. Thus, the inferred minor axis of the MW halo lies in the plane of the stellar disc. The halo, however, is not homologous and its flattening and orientation vary with radius. The inner parts of the halo are rounder than the outer parts and well-aligned with the stellar disc (that is the minor axis of the halo is perpendicular to the disc). Further out, the halo twists and the minor axis changes direction by $90^\circ$. This twist occurs over a very narrow radial range and reflects variations in the filamentary network along which mass was accreted into the MW.

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