Environmental dependence of star formation induced by cloud collisions in a barred galaxy
arXiv:1408.4863 · doi:10.1093/mnrasl/slu138
Abstract
Cloud collision have been proposed as a way to link the small-scale star formation process with the observed global relation between the surface star formation rate and gas surface density. We suggest that this model can be improved further by allowing the productivity of such collisions to depend on the relative velocity of the two clouds. Our adjustment implements a simple step function that results in the most successful collisions being at the observed velocities for triggered star formation. By applying this to a high resolution simulation of a barred galaxy, we successfully reproduce the observational result that the star formation efficiency (SFE) in the bar is lower than that in the spiral arms. This is not possible when we use an efficiency dependent on the internal turbulence properties of the clouds. Our results suggest that high velocity collisions driven by the gravitational pull of the clouds are responsible for the low bar SFE.
6 pages, 4 figures. Accepted for publication in MNRAS Letters
References in corpus (5)
- Star Formation in Disk Galaxies. I. Formation and Evolution of Giant Molecular Clouds via Gravitational Instability and Cloud Collisions
- Do cloud-cloud collisions trigger high-mass star formation? I. Small cloud collisions
- Molecular clouds towards RCW 49 and Westerlund 2; Evidence for cluster formation triggered by cloud-cloud collision
- Star formation efficiency in the Barred Spiral Galaxy NGC 4303
- Wide-field 12CO (J = 1-0) Imaging of the Nearby Barred Galaxy M83 with NMA and Nobeyema 45-m telescope: Molecular Gas Kinematics and Star Formation Along the Bar
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- CO Multi-line Imaging of Nearby Galaxies (COMING): VI. Radial variations in star formation efficiency
- Properties of giant molecular clouds in the strongly barred galaxy NGC1300
- GMC Collisions as Triggers of Star Formation. VI. Collision-Induced Turbulence