The Chemical Evolution of Starburst Nucleus Galaxies
arXiv:astro-ph/9703073 · doi:10.1086/310658
Abstract
The metallicities derived from spectroscopic observations of a sample of Starburst Nucleus Galaxies (SBNGs) are compared to those of several other types of galaxies (normal giant galaxies, Irregular and HII galaxies) drawn from the literature. The SBNGs are deficient in metals with respect to normal galaxies of same morphological type, suggesting that - SBNGs are galaxies still in the process of formation. Breaking the SBNGs into early-types (Sb and earlier) and late-types reveals that the former seem to follow the same linear luminosity-metallicity relation as the irregular and elliptical galaxies, whereas the latter and the giant spirals show comparable (0.2 and 0.3 dex) excess abundances with respect to the linear relation. This difference between the two types of SBNGs is consistent with the predictions of the model of hierarchical formation of galaxies: the early-type SBNGs are building their bulges by successive mergers of small stellar and gaseous systems, while the late-type SBNGs are mostly accreting gas to form a disk.
accepted for publication in the ApJ Letter
References in corpus (1)
Cited by in corpus (9)
- The Origin of the Mass--Metallicity Relation: Insights from 53,000 Star-Forming Galaxies in the SDSS
- Elemental Abundances in QSOs: Star Formation and Galactic Nuclear Evolution at High Redshifts
- The Structure and Clustering of Lyman Break Galaxies
- Chemical abundances in an UV-selected sample of galaxies
- The Nature of the Activity in Hickson Compact Groups of Galaxies
- Starbursts in barred spiral galaxies. VI. HI observations and the K-band Tully-Fisher relation
- The Evolution of Galaxies in Compact Groups
- HCG 16 Revisited: Clues About Galaxy Evolution in Groups
- The star formation history and chemical evolution of star forming galaxies in the nearby universe