Molecular CO(1-0) gas in the z~2 radio galaxy MRC 0152-209
arXiv:1105.0739 · doi:10.1088/2041-8205/734/1/L25
Abstract
We report the detection of molecular CO(1-0) gas in the high-z radio galaxy MRC 0152-209 (z = 1.92) with the Australia Telescope Compact Array Broadband Backend (ATCA/CABB). This is the third known detection of CO(1-0) in a high-z radio galaxy to date. CO(1-0) is the most robust tracer of the overall molecular gas content (including the wide-spread, low-density and subthermally excited component), hence observations of CO(1-0) are crucial for studying galaxy evolution in the Early Universe. We derive L'(CO) = (6.6 +- 2.0) x 10^10 K km/s pc^2 for MRC 0152-209, which is comparable to that derived from CO(1-0) observations of several high-z submillimetre and starforming BzK galaxies. The CO(1-0) traces a total molecular hydrogen mass of M(H2) = 5 x 10^10 (alpha_x/0.8) Msun. MRC 0152-209 is an infra-red bright radio galaxy, in which a large reservoir of cold molecular gas has not (yet) been depleted by star formation or radio source feedback. Its compact radio source is reliably detected at 40 GHz and has a steep spectral index of alpha = -1.3 between 1.4 and 40 GHz (4-115 GHz in the galaxy's rest-frame). MRC 0152-209 is part of an ongoing systematic ATCA/CABB survey of CO(1-0) in high-z radio galaxies between 1.7 < z < 3.
Accepted for publication in ApJL -- 8 pages, 3 figures
References in corpus (13)
- Distant Radio Galaxies and their Environments
- Tracing the molecular gas in distant submillimetre galaxies via CO(1-0) imaging with the EVLA
- The Massive Hosts of Radio Galaxies Across Cosmic Time
- Protoclusters associated with z > 2 radio galaxies. I. Characteristics of high redshift protoclusters
- The formation and assembly of a typical star-forming galaxy at z~3
- The Spitzer High Redshift Radio Galaxy Survey
- Detection of Two Massive CO Systems in 4C 41.17 at z = 3.8
- Estimating the total infrared luminosity of galaxies up to z~2 from mid- and far-infrared observations
- Interferometric imaging of the high-redshift radio galaxy, 4C60.07: An SMA, Spitzer and VLA study reveals a binary AGN/starburst
- Cold molecular gas in massive disk galaxies at z=1.5
- Jet-gas interactions in z~2.5 radio galaxies: evolution of the ultraviolet line and continuum emission with radio morphology
- CO line emission in the halo of a radio galaxy at z=2.6
- CO observations of high-z radio galaxies MRC 2104-242 and MRC 0943-242: spectral-line performance of the Compact Array Broadband Backend
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