Exploring the pertubed Milky Way disk and the substructures of the outer disk
Abstract
The recent discovery of a spiral feature in phase plane in the solar neighborhood implies that the Galactic disk has been remarkably affected by a dwarf galaxy passing through it some hundreds of millions of years ago. Using 429,500 LAMOST K giants stars, we show that the spiral feature exits not only in the solar vicinity; it also extends to about 15 kpc from the Galactic center, and then disappears beyond this radius. Moreover, we find that when the spiral features in a plot of as a function of position in the plane, at various Galactocentric radii, are re-mapped to plane, the spiral can explain well the observed asymmetric velocity substructures. This is evidence that the phase spiral features are the same as the bulk motions found in previous as well as this work. Test-particle simulations and N-body simulations show that an encounter with a dwarf galaxy a few hundred million years ago will induce a perturbation in the Galactic disk. In addition, we find that the last impact of Sgr dSph can also contribute to the flare. As a consequence of the encounter, the distribution function of disk stars at a large range of radii is imprinted by the gravitational perturbation.
Keywords
Cite
@article{arxiv.2010.14096,
title = {Exploring the pertubed Milky Way disk and the substructures of the outer disk},
author = {Y. Xu and C. Liu and H. Tian and H. J. Newberg and C. F. P. Laporte and B. Zhang and H. F. Wang and J. Li and L. C. Deng},
journal= {arXiv preprint arXiv:2010.14096},
year = {2020}
}
Comments
31pages, 23figures, ApJ accepted