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Kinematics and Dynamics of the Galactic Halo from RR Lyrae Variable Stars

机译:来自RR Lyrae变异星星的银河Halo的运动学和动态

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Based on a sample of RR Lyrae variable stars including more than 9000 objects with proper motions and distances, we have investigated the kinematics of the Galactic halo from the two-dimensional velocity field. We have used both the proper motions deduced independently by us from the positional data taken from all-sky catalogues in a time interval up to 65 years and the proper motions taken from the Gaia DR2 catalogue. In addition, we have also studied the halo kinematics from the three-dimensional velocity field of similar to 850 RR Lyrae variables with distances, proper motions, and line-of-sight velocities. The kinematic parameters describing the velocity field have been estimated by the maximum-likelihood method; their change with Galactocentric distance has been investigated. The radial velocity dispersion in spherical coordinates sigma(r) approximate to 160-170 km s(-1) exceeds its values from previous papers approximately by 20 km s(-1), while the anisotropy parameter beta approximate to 0.68-0.72 agrees satisfactorily with previous studies. When estimating the rotation velocity of the population of RR Lyrae stars, we identified the inner and outer halos with weak prograde and retrograde rotations, respectively.
机译:基于RR Lyrae的样本,包括9000多种具有适当运动和距离的物体,我们研究了从二维速度场的半乳清光环的运动学。我们使用了我们从所有天空目录中的位置数据独立推断的适当动作,时间间隔高达65年,以及从盖亚DR2目录所采取的适当动作。此外,我们还从三维速度场研究了Halo运动学,类似于850 RR Lyrae变量,距离,适当的运动和视线速度。通过最大似然法估算了描述速度场的运动学参数;他们的变化已经调查了Galactocentric距离。球面坐标中的径向速度分散σ(r)近似到160-170 km s(-1)超过其前一篇论文的值大约20kms(-1),而各向异性参数β接近0.68-0.72令人满意以前的研究。当估计RR Lyrae恒星群体的旋转速度时,我们识别出具有弱化晶圆和逆行旋转的内晕。

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