Galaxy Mass, Metallicity, Radius and Star Formation Rates
arXiv:1110.5862 · doi:10.1088/0004-637X/750/2/142
Abstract
Working with 108,786 Sloan Digital Sky Survey low redshift galaxies we have examined the relation between galaxy mass, metallicity, radius, and star formation rates primarily in the central portions of galaxies. We subdivided the redshift range covered in our sample, 0.07<z<0.3, into three narrower redshift bins, and three sets of radial size. We show that for 72% of the galaxies the observed gas metallicities, Zx, are consistent with (i) a quantitative physical relation for star formation through episodic infall of gas of metallicity Zi = 0.125x10^-3 +/- 1.25x10^-3; (ii) thorough mixing of infalling and native gas before onset of star formation; (iii) a star formation rate (SFR) proportional to the 3/2 power of the infalling mass rate, Mi; and (iv) intermittent quiescent phases devoid of star formation during which the native gas in a galaxy exhibits a characteristic elevated gas metallicity, Z0, dependent on galaxy mass, M*, and a characteristic ratio of stellar mass to native mass of gas, Mg. Most if not all our star-forming galaxies with M* < 2.0x10^10 Msun, and many with M* > 2.0x10^10 Msun and large radii appear fed by infall. Smaller massive galaxies with high Zx and high star formation rates show more complex behavior. A mean-field-theory toy model for the physics of infall accounts for the (SFR) \propto Mi^(3/2) relation and permits us to estimate the mean densities and velocities of clumps of baryonic matter traversing the dark matter halos in which the SDSS galaxies may be embedded.
34 pages plus bibliography and supplementary figures, 3 main figures, 131 supplementary online figures, ascii data tables available
References in corpus (13)
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- The Role of Pressure in GMC Formation II: The H_2 - Pressure Relation
- A Universal, Local Star Formation Law in Galactic Clouds, Nearby Galaxies, High-Redshift Disks, and Starbursts
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- The Origin of the Galaxy Mass-Metallicity Relation and Implications for Galactic Outflows
- Clues to the Origin of the Mass-Metallicity Relation: Dependence on Star Formation Rate and Galaxy Size
- Molecular Hydrogen and Global Star Formation Relations in Galaxies
- The Origin and Evolution of the Mass-Metallicity Relationship for Galaxies: Results from Cosmological N-Body Simulations
- The Metallicity of Galaxy Disks: Infall versus Outflow
- Simulations of Cosmic Chemical Enrichment
- The Hidden Mass and Large Spatial Extent of a Poststarburst Galaxy Outflow
- A Reservoir of Ionized Gas in the Galactic Halo to Sustain Star Formation in the Milky Way
- On The Gas Temperature of Molecular Cloud Cores
Cited by in corpus (23)
- De Re Metallica: The cosmic chemical evolution of galaxies
- Detection of high Lyman continuum leakage from four low-redshift compact star-forming galaxies
- Star formation sustained by gas accretion
- The cosmic evolution of oxygen and nitrogen abundances in star-forming galaxies over the past 10 Gyrs
- The brighter galaxies reionised the Universe
- JADES: Detecting [OIII] Emitters and Testing Strong Line Calibrations in the High- Universe with Ultra-deep JWST/NIRSpec Spectroscopy up to
- Metallicity inhomogeneities in local star-forming galaxies as sign of recent metal-poor gas accretion
- Extreme Emission-Line Galaxies in SDSS. I. Empirical and model-based calibrations of chemical abundances
- Characterizing the local relation between star formation rate and gas-phase metallicity in MaNGA spiral galaxies
- Local anti-correlation between star-formation rate and gas-phase metallicity in disk galaxies
- The origin of the relation between metallicity and size in star-forming galaxies
- The Evolution of Gas-Phase Metallicity and Resolved Abundances in Star-forming Galaxies at
- Are the host galaxies of Long Gamma-Ray Bursts more compact than star-forming galaxies of the field?
- The mass-metallicity and fundamental metallicity relations in non-AGN and AGN-host galaxies
- Local and global gas metallicity versus stellar age relation in MaNGA galaxies
- The Redshift Evolution of the Relation between Stellar Mass, Star Formation Rate, and Gas Metallicity of Galaxies
- Gas Accretion and Star Formation Rates
- Determining the large-scale environmental dependence of gas-phase metallicity in dwarf galaxies
- Origin of the Galaxy Mass-Metallicity-Star-Formation Relation
- Surface density: a new parameter in the fundamental metallicity relation of star-forming galaxies
- CEMPlifying reionization
- Intermittent Self-Sustaining Star Formation in Low-Redshift Galaxies Exhibiting a Peak Metallicity Plateau
- The extension of the Fundamental Metallicity Relation beyond the BPT star-forming sequence: evidence for both gas accretion and starvation