论文标题
用Gaia DR3映射银河系磁盘:3D扩展运动地图和旋转曲线至$ \ $ \ 30 $ kpc
Mapping the Milky Way Disk with Gaia DR3: 3D extended kinematic maps and rotation curve to $\approx 30$ kpc
论文作者
论文摘要
我们将基于Lucy的反转方法(LIM)的视差错误对GAIA-DR3源应用统计解卷,以测量其在8 kpc和30 kpc之间的半乳突距离范围内的三维速度成分,并具有相应的错误和均值正方形值。我们发现结果与通过将LIM应用于Gaia-DR2源获得的结果一致,我们得出的结论是,该方法通过改善数据集的统计数据并降低观察误差提供了收敛性和更准确的结果。在LIM上重建的运动图大约30美元$ kpc表明,银河系的特征是所有速度组件中具有重要梯度的不对称运动。此外,我们确定了带有轴对称重力电势的圆柱牛仔裤方程的Galaxy旋转曲线$ v_c(r)$最高约27.5 $ kpc。我们发现$ v_c(r)$大大下降到所调查的最大半径。最后,我们还以不同的垂直高度测量$ v_c(r)$,这表明,对于$ r <15 $ kpc,对$ z $有明显的依赖性,而在较大$ r $的情况下,对$ z $的依赖是可以忽略不计。
We apply a statistical deconvolution of the parallax errors based on Lucy's inversion method (LIM) to the Gaia-DR3 sources to measure their three dimensional velocity components in the range of Galactocentric distances $R$ between 8 kpc and 30 kpc with their corresponding errors and root mean square values. We find results that are consistent with those obtained by applying LIM to the Gaia-DR2 sources, and we conclude that the method gives convergent and more accurate results by improving the statistics of the data-set and lowering observational errors. The kinematic maps reconstructed with LIM up to $R \approx 30$ kpc show that the Milky Way is characterized by asymmetrical motions with significant gradients in all velocity components. Furthermore, we determine the Galaxy rotation curve $V_C(R)$ up to $\approx 27.5$ kpc with the cylindrical Jeans equation assuming an axisymmetric gravitational potential. We find that $V_C(R)$ is significantly declining up to the largest radius investigated. Finally, we also measure $V_C(R)$ at different vertical heights, showing that, for $R <15$ kpc, there is a marked dependence on $Z$, whereas at larger $R$ the dependence on $Z$ is negligible.