English

Warp, Waves, and Wrinkles in the Milky Way

Astrophysics of Galaxies 2018-07-04 v2

Abstract

We derive unbiased distance estimates for the Gaia-TGAS dataset by correcting for the bias due to the distance dependence of the selection function, which we measure directly from the data. From these distances and proper motions, we estimate the vertical and azimuthal velocities, WW and VϕV_\phi, and angular momentum LzL_z for stars in the Galactic centre and anti-centre directions. The resulting mean vertical motion W\overline{W} shows a linear increase with both VϕV_\phi and LzL_z at 10σ10 \sigma significance. Such a trend is expected from and consistent with the known Galactic warp. This signal extends to stars with guiding centre radii Rg<R0R_g<R_0, placing the onset of the warp at R7kpcR\lesssim7{\rm kpc}. At equally high significance, we detect a previously unknown wave-like pattern of W\overline{W} over guiding centre RgR_g with amplitude 1kms1\sim1{\rm kms}^{-1} and wavelength 2.5kpc\sim2.5{\rm kpc}. This pattern is present in both the centre and anti-centre directions, consistent with a winding (corrugated) warp or bending wave, likely related to known features in the outer disc (TriAnd and Monoceros over-densities), and may be caused by the interaction with the Sgr dwarf galaxy 1Gyr\sim1{\rm Gyr} ago. The only significant deviation from this simple fit is a stream-like feature near Rg9kpcR_g\sim9{\rm kpc} (Lz2150kpckms1|L_z|\sim2150{\rm kpckms}^{-1}).

Keywords

Cite

@article{arxiv.1712.06616,
  title  = {Warp, Waves, and Wrinkles in the Milky Way},
  author = {Ralph Schönrich and Walter Dehnen},
  journal= {arXiv preprint arXiv:1712.06616},
  year   = {2018}
}

Comments

17 pages, 15 figures, MNRAS in press, some additional tests