论文标题

坐标转换在银河系结构的动态解释中的力量

The power of co-ordinate transformations in dynamical interpretations of Galactic structure

论文作者

Hunt, Jason A. S., Johnston, Kathryn V., Pettitt, Alex R., Cunningham, Emily C., Kawata, Daisuke, Hogg, David W.

论文摘要

$ Gaia $ dr2提供了有关星系中恒星位置和动作的空前信息,并强调了光盘中的不平衡程度。当我们在光盘的更广泛区域上收集数据时,开始分析恒星动作和角度的越来越吸引人,这些动作和角度是专门标记轨道空间的,而不是当前的相位空间位置。从概念上讲,虽然$ \ bar {x} $和$ \ bar {v} $告诉我们潜在的和局部交互的信息,但分组的恒星将具有相似频率的恒星组合在一起,因此对几个轨道上发生的动态效果的响应相似。分组动作和角度进一步完善了这一点,以隔离在太空中一起行驶的恒星,因此具有共同的历史。混合这些坐标系可能会混淆解释。例如,有人建议,通过将恒星移至指导半径,在$ gaia $ data \ citep {khoperskov+19b}中,螺旋结构的螺旋结构可见。但是,在这项工作中,我们证明这些功能实际上是已知的运动运动组,无论是$ l_z-ϕ $还是$ v _ {\ mathrm {r}}} - v_ ϕ $ planes。使用模拟,随着我们转向银河系的全球视图,我们表明这种区别将变得更加重要。例如,我们表明,在$ GAIA $和Apogee的银河盘中看到的径向速度波应该在动作角框架中变得更强壮,并且可以通过瞬态螺旋结构来重现它。

$Gaia$ DR2 has provided an unprecedented wealth of information about the positions and motions of stars in our Galaxy, and has highlighted the degree of disequilibria in the disc. As we collect data over a wider area of the disc it becomes increasingly appealing to start analysing stellar actions and angles, which specifically label orbit space, instead of their current phase space location. Conceptually, while $\bar{x}$ and $\bar{v}$ tell us about the potential and local interactions, grouping in action puts together stars that have similar frequencies and hence similar responses to dynamical effects occurring over several orbits. Grouping in actions and angles refines this further to isolate stars which are travelling together through space and hence have shared histories. Mixing these coordinate systems can confuse the interpretation. For example, it has been suggested that by moving stars to their guiding radius, the Milky Way spiral structure is visible as ridge-like overdensities in the $Gaia$ data \citep{Khoperskov+19b}. However, in this work, we show that these features are in fact the known kinematic moving groups, both in the $L_z-ϕ$ and the $v_{\mathrm{R}}-v_ϕ$ planes. Using simulations we show how this distinction will become even more important as we move to a global view of the Milky Way. As an example, we show that the radial velocity wave seen in the Galactic disc in $Gaia$ and APOGEE should become stronger in the action-angle frame, and that it can be reproduced by transient spiral structure.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源