Chemical evolution of starburst galaxies: How does star formation proceed?
arXiv:astro-ph/0204424 · doi:10.1051/0004-6361:20020592
Abstract
We compute chemical evolution models to constrain the mode and the history of star formation in starburst galaxies as a whole, i.e. over a large range of mass and metallicity. To this end, we investigate the origin of the dispersion observed in the evolution of both nitrogen-to-oxygen abundance ratio and galaxy luminosity as a function of metallicity for a large sample of starburst galaxies. We find that the variation of the star formation efficiency, in the framework of continuous star formation models, produce a scatter equivalent to what is observed in the N/O versus O/H diagram for low-mass HII galaxies only. However, continous star formation models are unable to reproduce i) the scatter observed for massive starburst and UV-selected galaxies in the N/O versus O/H relation, and ii) the scatter in the luminosity versus O/H scaling relation observed for the whole sample of starburst galaxies. The dispersion associated with the distribution of N/O as a function of metallicity, for both low-mass and massive galaxies, is well explained in the framework of bursting star formation models. It is interpreted as a consequence of the time-delay between the ejection of nitrogen and that of oxygen into the ISM. These models also reproduce the spread observed in the luminosity-metallicity relation. Metal-rich spiral galaxies differ from metal-poor ones by a higher star formation efficiency and starburst frequency. Low-mass galaxies experienced a few bursts of star formation whereas massive spiral galaxies experienced numerous and extended powerful starbursts (abridged version).
9 pages, 4 figures. Accepted for publication in A&A
References in corpus (4)
- Oxygen abundances in dwarf irregular galaxies and the metallicity - luminosity relationship
- Chemical abundances in an UV-selected sample of galaxies
- Multiwavelength Study of the Starburst Galaxy NGC 7714. II: The Balance between Young, Intermediate Age and Old Stars
- Evidence in Favour of IMF Variations
Cited by in corpus (24)
- Optical Spectroscopy and Nebular Oxygen Abundances of the Spitzer/SINGS Galaxies
- Modelling the nebular emission from primeval to present-day star-forming galaxies
- Oxygen and nitrogen abundances in nearby galaxies. Correlations between oxygen abundance and macroscopic properties
- Dusty, Radiation Pressure Dominated Photoionization. I. Model Description, Structure And Grids
- Emission-line Diagnostics of Low Metallicity AGN
- Oxygen and Nitrogen in Isolated Dwarf Irregular Galaxies
- The Luminosity-Metallicity relation in the local universe from the 2dF Galaxy Redshift Survey
- The Nitrogen-to-Oxygen evolution in galaxies: the role of the star formation rate
- The origin of nitrogen: Implications of recent measurements of N/O in Galactic metal-poor stars
- Chemical evolution of Local Group dwarf galaxies in a cosmological context -- I. A new modelling approach and its application to the Sculptor dwarf spheroidal galaxy
- The metallicity-luminosity relation at medium redshift based on faint CADIS emission line galaxies
- Formation and evolution of late-type dwarf galaxies. I. NGC 1705 and NGC 1569
- Physical properties of two low-luminosity z ~ 1.9 galaxies behind the lensing cluster AC 114
- Starbursts in barred spiral galaxies. VI. HI observations and the K-band Tully-Fisher relation
- Constraining Photoionization Models With a Reprojected Optical Diagnostic Diagram
- Chemical abundances in spiral and irregular galaxies. O and N abundances derived from global emission--line spectra
- The evolution of H{\sc ii} galaxies: Testing the bursting scenario through the use of self-consistent models
- Upper boundaries of AGN regions in optical diagnostic diagrams
- N/O abundance ratios in gamma-ray burst and supernova host galaxies at z<4. Comparison with AGN, starburst and HII regions
- The metallicities of luminous, massive field galaxies at intermediate redshifts
- Far-Infrared Line Diagnostics: Improving N/O Abundance Estimates for Dusty Galaxies
- The chemical case for no winds in dwarf irregular galaxies
- Evolution of star forming dwarf galaxies: Characterizing the star formation scenarios
- Distribution of the heavy elements throughout the extended narrow line region of the Seyfert galaxy NGC 7212