论文标题

银河系的质量使用光环到100 kpc

The mass of the Milky Way out to 100 kpc using halo stars

论文作者

Deason, Alis J., Erkal, Denis, Belokurov, Vasily, Fattahi, Azadeh, Gómez, Facundo A., Grand, Robert J. J., Pakmor, Rüdiger, Xue, Xiang-Xiang, Liu, Chao, Yang, Chengqun, Zhang, Lan, Zhao, Gang

论文摘要

我们使用分布函数分析使用大量的光环恒星估计银河系的质量至100 kpc。这些恒星是从文献中汇编成的,绝大多数(〜98%)具有6D相位空间信息。我们特别关注系统效应,例如大麦芽云(LMC)的动态影响以及未删除的子结构的效果。 LMC偏向(前LMC前的)光环质量估计值较高的值,而宇宙学模拟的现实恒星光环倾向于低估真正的光晕质量。将我们的方法应用于银河系数据后,我们发现M(<100 kpc)= 6.07 +/- 0.29(stat。)+/- 1.21(sys。)x 10^11 m_sun的质量。对于此估计值,我们使用Erkal等人的LMC诱导的反射运动进行了大致校正。模型,假设LMC和MW具有刚性的潜力。此外,可能属于射手座流的恒星被删除,我们包括5%的系统偏见,并根据我们的宇宙学模拟测试的测试基于20%的系统不确定性。假设Navarro-frenk-white光环的质量浓度关系,我们的质量估计有利于M_200C的总质量(前LMC输入)质量= 1.01 +/- 0.24 x 10^12 m_sun,或(lmc insun)质量为m_200c = 1.16 +0.200 x 10^10 m________________11 10^10^10^10^10 m_____________11^10^10^10^MON包括刚性的LMC。

We use a distribution function analysis to estimate the mass of the Milky Way out to 100 kpc using a large sample of halo stars. These stars are compiled from the literature, and the vast majority (~98%) have 6D phase-space information. We pay particular attention to systematic effects, such as the dynamical influence of the Large Magellanic Cloud (LMC), and the effect of unrelaxed substructure. The LMC biases the (pre-LMC infall) halo mass estimates towards higher values, while realistic stellar halos from cosmological simulations tend to underestimate the true halo mass. After applying our method to the Milky Way data we find a mass within 100 kpc of M(< 100 kpc) = 6.07 +/- 0.29 (stat.) +/- 1.21 (sys.) x 10^11 M_Sun. For this estimate, we have approximately corrected for the reflex motion induced by the LMC using the Erkal et al. model, which assumes a rigid potential for the LMC and MW. Furthermore, stars that likely belong to the Sagittarius stream are removed, and we include a 5% systematic bias, and a 20% systematic uncertainty based on our tests with cosmological simulations. Assuming the mass-concentration relation for Navarro-Frenk-White haloes, our mass estimate favours a total (pre-LMC infall) Milky Way mass of M_200c = 1.01 +/- 0.24 x 10^12 M_Sun, or (post-LMC infall) mass of M_200c = 1.16 +/- 0.24 x 10^12 M_Sun when a 1.5 x 10^11 M_Sun mass of a rigid LMC is included.

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