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A Milky Way with a massive, centrally concentrated thick disc: new Galactic mass models for orbit computations

机译:一种带有巨大,中央浓缩圆盘的银河系:用于轨道计算的新的银河群模型

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摘要

In this work, two new axisymmetric models for the Galactic mass distribution are presented. Motivated by recent results, these two models include the contribution of a stellar thin disc and of a thick disc, as massive as the thin counterpart but with a shorter scale-length. Both models satisfy a number of observational constraints: stellar densities at the solar vicinity, thin and thick disc scale lengths and heights, rotation curve(s), and the absolute value of the perpendicular force K _( z ) as a function of distance to the Galactic centre. We numerically integrate into these new models the motion of all Galactic globular clusters for which distances, proper motions, and radial velocities are available, and the orbits of about one thousand stars in the solar vicinity. The retrieved orbital characteristics are compared to those obtained by integrating the clusters and stellar orbits in pure thin disc models. We find that, due to the possible presence of a thick disc, the computed orbital parameters of disc stars can vary by as much as 30–40%. We also show that the systematic uncertainties that affect the rotation curve still plague computed orbital parameters of globular clusters by similar amounts.
机译:在这项工作中,提出了两个用于银河系分布的新轴对称模型。最近的结果,这两种模型包括恒星薄盘和厚盘的贡献,如薄的对应物,但具有较短的鳞片长度。两种模型都满足了许多观察约束:太阳附近的恒星密度,薄且厚的盘垢长度和高度,旋转曲线和垂直力k _(z)的绝对值作为距离的距离银河系中心。我们以数控融为于这些新模型,所有银河球簇的运动都可以使用距离,适当的运动和径向速度,以及太阳附近的大约一千颗恒星的轨道。将检索到的轨道特性与通过在纯薄盘模型中整合簇和恒星轨道而获得的。我们发现,由于可能存在厚盘,光盘恒星的计算轨道参数可以变化多达30-40%。我们还表明,影响旋转曲线的系统不确定性仍然通过类似的数量扰乱球簇的计算轨道参数。

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