paper

Deceptively cold dust in the massive starburst galaxy GN20 at

arXiv:2002.02974 · doi:10.1051/0004-6361/201937217

Abstract

We present new observations, carried out with IRAM NOEMA, of the atomic neutral carbon transitions [CI](1-0) at 492 GHz and [CI](2-1) at 809 GHz of GN20, a well-studied star-bursting galaxy at . The high luminosity line ratio [CI](2-1)/[CI](1-0) implies an excitation temperature of K, which is significantly higher than the apparent dust temperature of K () derived under the common assumption of an optically thin far-infrared dust emission, but fully consistent with K of a general opacity model where the optical depth () reaches unity at a wavelength of m. Moreover, the general opacity solution returns a factor of lower dust mass and, hence, a lower molecular gas mass for a fixed gas-to-dust ratio, than with the optically thin dust model. The derived properties of GN20 thus provide an appealing solution to the puzzling discovery of starbursts appearing colder than main-sequence galaxies above , in addition to a lower dust-to-stellar mass ratio that approaches the physical value predicted for starburst galaxies.

Comments: 6 pages, 4 figures, accepted for publication in Astronomy and Astrophysics Letters on February 4th 2020