论文标题

用球形谐波量化恒星光环对LMC的反应

Quantifying the Stellar Halo's Response to the LMC's Infall with Spherical Harmonics

论文作者

Cunningham, Emily C., Garavito-Camargo, Nicolas, Deason, Alis J., Johnston, Kathryn V., Erkal, Denis, Laporte, Chervin F. P., Besla, Gurtina, Luger, Rodrigo, Sanderson, Robyn E.

论文摘要

银河系中绝大多数质量(MW)是暗物质(DM);因此,我们无法直接观察MW质量分布,并且必须使用示踪剂种群来推断MW DM Halo的性质。但是,MW光环示踪剂不仅会感受到MW本身的重力影响。示踪剂也可能受到MW卫星的影响; Garavito-Camargo等。 (2019年)(以下称为GC19)证明,大型麦哲伦云(LMC)在MW DM中诱导了密度唤醒,从而在MW恒星光环中产生了大规模的运动学模式。在这项工作中,我们使用模拟恒星光环的速度场的球形谐波膨胀(SHA),以努力将大尺度上的扰动(例如,由于LMC本身以及由于LMC诱导的DM唤醒)和小尺度(由于子结构)。使用GC19模拟,我们演示了恒星速度场中的不同项如何反映不同的尾流组件,并表明这些特征是LMC质量的强大功能。探索由Accreted Dwarfs Bullock&Johnston(2005)构建的模型光晕,这表明,与LMC引起的唤醒相比,来自巨大的,最近的积聚事件的恒星碎片可以在速度角功率光谱中产生更多的功率。因此,我们考虑了射手座(SGR)流的两个模型 - 除了LMC之外,MW中最新的大量积聚事件 - 发现大尺度上的角功率通常由LMC诱导的唤醒所支配,即使包括SGR,也是如此。我们得出的结论是,MW恒星光环速度场可能是量化MW DM光环对LMC的响应的有用工具。

The vast majority of the mass in the Milky Way (MW) is in dark matter (DM); we therefore cannot directly observe the MW mass distribution, and have to use tracer populations in order to infer properties of the MW DM halo. However, MW halo tracers do not only feel the gravitational influence of the MW itself. Tracers can also be affected by MW satellites; Garavito-Camargo et al. (2019) (hereafter GC19) demonstrate that the Large Magellanic Cloud (LMC) induces a density wake in the MW DM, resulting in large scale kinematic patterns in the MW stellar halo. In this work, we use spherical harmonic expansion (SHE) of the velocity fields of simulated stellar halos in an effort to disentangle perturbations on large scales (e.g., due to the LMC itself as well as the LMC-induced DM wake) and small scales (due to substructure). Using the GC19 simulations, we demonstrate how the different terms in the SHE of the stellar velocity field reflect the different wake components, and show that these signatures are a strong function of the LMC mass. An exploration of model halos built from accreted dwarfs Bullock & Johnston (2005) suggests that stellar debris from massive, recent accretion events can produce much more power in the velocity angular power spectra than the perturbation from the LMC-induced wake. We therefore consider two models for the Sagittarius (Sgr) stream -- the most recent, massive accretion event in the MW apart from the LMC -- and find that the angular power on large scales is generally dominated by the LMC-induced wake, even when Sgr is included. We conclude that SHE of the MW stellar halo velocity field may therefore be a useful tool in quantifying the response of the MW DM halo to the LMC's infall.

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