English

The Warm Gas in the MW: A Kinematical Model

Astrophysics of Galaxies 2020-05-27 v1

Abstract

We develop a kinematical model for the Milky Way Si IV-bearing gas to determine its density distribution and kinematics. This model is constrained by a column density line shape sample extracted from the {\it HST}/COS archival data, which contains 186 AGN sight lines. We find that the Si IV ion density distribution is dominated by an extended disk along the zz-direction (above or below the midplane), i.e., n(z)=n0exp((z/z0)0.82)n(z)=n_0\exp(-(z/z_0)^{0.82}), where z0z_0 is the scale height of 6.31.5+1.66.3_{-1.5}^{+1.6} kpc (northern hemisphere) and 3.60.9+1.03.6_{-0.9}^{+1.0} kpc (southern hemisphere). The density distribution of the disk in the radial direction shows a sharp edge at 152015-20 kpc given by, n(rXY)=n0exp((rXY/r0)3.36)n(r_{\rm XY})=n_0\exp(-(r_{\rm XY}/r_0)^{3.36}), where r012.5±0.6r_0 \approx 12.5\pm0.6 kpc. The difference of density distributions over rXYr_{\rm XY} and zz directions indicates that the warm gas traced by \ion{Si}{4} is mainly associated with disk processes (e.g., feedback or cycling gas) rather than accretion. We estimate the mass of the warm gas (within 50 kpc) is log(M(50kpc)/M)8.1\log (M(50 {\rm kpc})/M_\odot)\approx8.1 (assuming Z0.5ZZ\approx0.5Z_\odot), and a 3σ3\sigma upper limit of log(M(250kpc)/M)9.1\log (M(250 {\rm kpc})/M_\odot)\approx9.1 (excluding the Magellanic system). Kinematically, the warm gas disk is nearly co-rotating with the stellar disk at vrot=215±3 km s1v_{\rm rot}=215\pm3\rm~km~s^{-1}, which lags the midplane rotation by about 8 km s1 kpc18\rm~km~s^{-1}~kpc^{-1} (within 5 kpc). Meanwhile, we note that the warm gas in the northern hemisphere has significant accretion with vaccv_{\rm acc} of 69±7 km s169\pm 7\rm ~km~s^{-1} at 10 kpc (an accretion rate of 0.600.13+0.11 M yr1-0.60_{-0.13}^{+0.11}~M_\odot\rm~yr^{-1}), while in the southern hemisphere, there is no measurable accretion, with an upper limit of 0.4 M yr10.4~M_\odot\rm~yr^{-1}.

Keywords

Cite

@article{arxiv.2002.06434,
  title  = {The Warm Gas in the MW: A Kinematical Model},
  author = {Zhijie Qu and Joel N. Bregman and Edmund Hodges-Kluck and Jiang-Tao Li and Ryan Lindley},
  journal= {arXiv preprint arXiv:2002.06434},
  year   = {2020}
}

Comments

Accepted by ApJ

R2 v1 2026-06-23T13:42:48.748Z