Gas Kinematics and Excitation in the Filamentary IRDC G035.39-00.33
arXiv:1401.2347 · doi:10.1093/mnras/stu078
Abstract
Some theories of dense molecular cloud formation involve dynamical environments driven by converging atomic flows or collisions between preexisting molecular clouds. The determination of the dynamics and physical conditions of the gas in clouds at the early stages of their evolution is essential to establish the dynamical imprints of such collisions, and to infer the processes involved in their formation. We present multi-transition 13CO and C18O maps toward the IRDC G035.39-00.33, believed to be at the earliest stages of evolution. The 13CO and C18O gas is distributed in three filaments (Filaments 1, 2 and 3), where the most massive cores are preferentially found at the intersecting regions between them. The filaments have a similar kinematic structure with smooth velocity gradients of ~0.4-0.8 km s-1 pc-1. Several scenarios are proposed to explain these gradients, including cloud rotation, gas accretion along the filaments, global gravitational collapse, and unresolved sub-filament structures. These results are complemented by HCO+, HNC, H13CO+ and HN13C single-pointing data to search for gas infall signatures. The 13CO and C18O gas motions are supersonic across G035.39-00.33, with the emission showing broader linewidths toward the edges of the IRDC. This could be due to energy dissipation at the densest regions in the cloud. The average H2 densities are ~5000-7000 cm-3, with Filaments 2 and 3 being denser and more massive than Filament 1. The C18O data unveils three regions with high CO depletion factors (f_D~5-12), similar to those found in massive starless cores.
20 pages, 14 figures, 6 tables, accepted for publication in MNRAS
References in corpus (9)
- CO Isotopologues in the Perseus Molecular Cloud Complex: the X-Factor and Regional Variations
- Star Formation in Disk Galaxies. I. Formation and Evolution of Giant Molecular Clouds via Gravitational Instability and Cloud Collisions
- From the warm magnetized atomic medium to molecular clouds
- Equilibrium Star Cluster Formation
- Cooling, Gravity and Geometry: Flow-driven Massive Core Formation
- Parametrization of C-shocks. Evolution of the Sputtering of Grains
- Complex, Quiescent Kinematics in a Highly Filamentary Infrared Dark Cloud
- Probing the initial conditions of High Mass Star formation -- I. Deuteration and depletion in high mass pre/protocluster clumps
- Shock-triggered formation of magnetically-dominated clouds
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- Probing the massive star forming environment - a multiwavelength investigation of the filamentary IRDC G333.73+0.37
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