Dynamical Structure of the Molecular Interstellar Medium in an Extremely Bright, Multiply Lensed z~3 Submillimeter Galaxy Discovered with Herschel
Dominik A. Riechers (Caltech), A. Cooray, A. Omont, R. Neri, A.I., Harris, A.J. Baker, P. Cox, D.T. Frayer, J.M. Carpenter, R. Auld, H. Aussel,, A. Beelen, R. Blundell, J. Bock, D. Brisbin, D. Burgarella, P. Chanial, S.C., Chapman, D.L. Clements, A. Conley, C.D. Dowell, S. Eales

TL;DR
This study uses gravitational lensing and multiple telescopes to analyze the molecular gas dynamics in a bright, high-redshift submillimeter galaxy, revealing complex kinematics consistent with a major merger.
Contribution
It provides detailed spatially resolved observations of molecular gas in a z~3 SMG, demonstrating the power of lensing to study early universe galaxy dynamics.
Findings
Molecular gas is spatially resolved into four lensed images.
Gas kinematics suggest a major merger driving starburst activity.
Derived gas mass and star formation properties are typical for SMGs.
Abstract
We report the detection of CO 5-4, 3-2, and 1-0 emission in the strongly lensed, Herschel/SPIRE-selected submillimeter galaxy (SMG) HLSW-01 at z=2.9574+/-0.0001, using the Plateau de Bure Interferometer, the Combined Array for Research in Millimeter-wave Astronomy, and the Green Bank Telescope. The observations spatially resolve the molecular gas into four lensed images with a maximum separation of ~9", and reveal the internal gas dynamics in this system. We derive lensing-corrected CO line luminosities of L'(CO 1-0) = (4.17+/-0.41), L'(CO 3-2) = (3.96+/-0.20) and L'(CO 5-4) = (3.45+/-0.20) x 10^10 (mu_L/10.9)^-1 Kkm/s pc^2, corresponding to luminosity ratios of r_31 = 0.95+/-0.10, r_53 = 0.87+/-0.06, and r_51 = 0.83+/-0.09. This suggests a total molecular gas mass of Mgas = 3.3 x 10^10 (alpha_CO/0.8) (mu_L/10.9)^-1 Msun. The gas mass, gas mass fraction, gas depletion timescale, star…
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