期刊
ASTROPHYSICAL JOURNAL
卷 734, 期 1, 页码 -出版社
IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/734/1/48
关键词
cosmology: theory; evolution; galaxies: evolution; methods: numerical; stars: formation; stars: mass-loss
资金
- NSF [AST-0708154]
- Kavli Institute for Cosmological Physics at the University of Chicago through the NSF [PHY-0551142]
- Fermilab
- Kavli Institute for Cosmological Physics
- University of Chicago
We examine the importance of secular stellar mass loss for fueling ongoing star formation in disk galaxies during the late stages of their evolution. For a galaxy of a given stellar mass, we calculate the total mass loss rate of its entire stellar population using star formation histories derived from the observed evolution of the M-*-star formation rate (SFR) relation, along with the predictions of standard stellar evolution models for stellar mass loss for a variety of initial stellar mass functions. Our model shows that recycled gas from stellar mass loss can provide most or all of the fuel required to sustain the current level of star formation in late-type galaxies. Stellar mass loss can therefore remove the tension between the low gas infall rates that are derived from observations and the relatively rapid star formation occurring in disk galaxies. For galaxies where cold gas infall rates have been estimated, we demonstrate explicitly that stellar mass loss can account for most of the deficit between their SFR and infall rate.
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