English

Flat Rotation Curves found in Merging Dusty Starbursts at $z=2.3$ through Tilted-Ring Modeling

Astrophysics of Galaxies 2018-09-05 v2

Abstract

The brightest 500μ\,\mum source in the XMM field, HXMM01, is a rare merger of luminous starburst galaxies at z=2.3z=2.3 with a dust-obscured star-formation rate of 2,000Myr1\,M_{\odot}\,{\rm yr}^{-1}. Here we present high-resolution spectroscopic observations of HXMM01 with the Atacama Large Millimeter/submillimeter Array (ALMA). We detect line emission from COJ=76{\rm CO\,{\it J}=7\to6}, [C I]3P23P1\,{{^3P_2}\to{^3P_1}}, and p-H2O211202{\rm H_{2}O}\,{2_{11}}\to{2_{02}} and continuum emission at 230230\,GHz. At a spatial resolution of 0.2" and a spectral resolution of 40kms1\,\rm km\,s^{-1}, the source is resolved into three distinct components, which are spatially and dynamically associated within a projected radius of 20\,kpc and a radial velocity range of 2,000kms1\,\rm km\,s^{-1}. For two major components, our Bayesian-based tilted-ring modeling of the ALMA spectral cubes shows almost flat rotation curves peaking at 500kms1\sim500\,\rm km\,s^{-1} at galactocentric distances between 2 and 5\,kpc. Each of them has a dynamical mass of 1011M\sim10^{11}\,M_\odot. The combination of the dynamical masses and the archival COJ=10{\rm CO\,{\it J}=1\to0} data places strong upper limits on the CO\toH2_2 conversion factor of αCO1.42.0M(Kkms1pc2)1\alpha_{\rm CO}\lesssim1.4-2.0\,{M_{\odot}}\,\rm (K\,km\,s^{-1}\,pc^{2})^{-1}. These limits are significantly below the Galactic inner disk αCO\alpha_{\rm CO} value of 4.3M(Kkms1pc2)14.3\,{M_{\odot}}\,\rm (K\,km\,s^{-1}\,pc^{2})^{-1} but are consistent with those of local starbursts. Therefore, the previously estimated short gas depletion timescale of 200\sim200\,Myr remains unchanged.

Keywords

Cite

@article{arxiv.1807.04291,
  title  = {Flat Rotation Curves found in Merging Dusty Starbursts at $z=2.3$ through Tilted-Ring Modeling},
  author = {Rui Xue and Hai Fu and Jacob Isbell and R. J. Ivison and Asantha Cooray and Iván Oteo},
  journal= {arXiv preprint arXiv:1807.04291},
  year   = {2018}
}

Comments

Accepted for publication in ApJL