Scaling Relations between Gas and Star Formation in Nearby Galaxies
arXiv:1012.3749 · doi:10.1017/S1743921311000597
Abstract
High resolution, multi-wavelength maps of a sizeable set of nearby galaxies have made it possible to study how the surface densities of HI, H2 and star formation rate (Sigma_HI, Sigma_H2, Sigma_SFR) relate on scales of a few hundred parsecs. At these scales, individual galaxy disks are comfortably resolved, making it possible to assess gas-SFR relations with respect to environment within galaxies. Sigma_H2, traced by CO intensity, shows a strong correlation with Sigma_SFR and the ratio between these two quantities, the molecular gas depletion time, appears to be constant at about 2Gyr in large spiral galaxies. Within the star-forming disks of galaxies, Sigma_SFR shows almost no correlation with Sigma_HI. In the outer parts of galaxies, however, Sigma_SFR does scale with Sigma_HI, though with large scatter. Combining data from these different environments yields a distribution with multiple regimes in Sigma_gas - Sigma_SFR space. If the underlying assumptions to convert observables to physical quantities are matched, even combined datasets based on different SFR tracers, methodologies and spatial scales occupy a well define locus in Sigma_gas - Sigma_SFR space.
8 pages; to appear in "IAU Symposium 270 - Computational Star Formation" (Eds. Alves, Elmegreen, Girart, Trimble)
References in corpus (3)
Cited by in corpus (4)
- Local starburst conditions and formation of GRB 980425 / SN 1998bw within a collisional ring
- WALLABY Pilot Survey: Hydra Cluster Galaxies UV and HI morphometrics
- Predicting HCN, HCO + , multi-transition CO, and dust emission of star-forming galaxies: Constraining the properties of resolved gas and dust disks of local spiral galaxies
- Direct detection of cool molecular gas in a star-forming galaxy at