A Bound on the Light Emitted During the TP-AGB Phase
arXiv:1004.2709 · doi:10.1088/0004-637X/733/2/81
Abstract
The integrated luminosity of the TP-AGB phase is a major uncertainty in stellar population synthesis models. We use the white dwarf initial final mass relation and stellar interiors models to demonstrate that a significant fraction of the core mass growth for intermediate (1.5 < Msun < 6) mass stars takes place during the TP-AGB phase. We find evidence that the peak fractional core mass contribution for TP-AGB stars is ~20% and occurs for stars between 2 Msun and 3.5 Msun. Using a simple fuel consumption argument we couple this core mass increase to a lower limit on the TP-AGB phase energy output. Roughly half of the energy released in models of TP-AGB stars can be directly accounted for by this core growth; while the remainder is predominantly the stellar yield of He. A robust measurement of the emitted light in this phase will therefore set strong constraints on helium enrichment from TP-AGB stars, and we estimate the yields predicted by current models as a function of initial mass. Implications for stellar population studies and prospects for improvements are discussed.
Submitted to the Astrophysical Journal. 25 pages, 2 figures.
References in corpus (16)
- The propagation of uncertainties in stellar population synthesis modeling I: The relevance of uncertain aspects of stellar evolution and the IMF to the derived physical properties of galaxies
- Accurate masses and radii of normal stars: modern results and applications
- The propagation of uncertainties in stellar population synthesis modeling III: model calibration, comparison, and evaluation
- The ACS Nearby Galaxy Survey Treasury
- Scaled solar tracks and isochrones in a large region of the Z-Y plane I. From the ZAMS to the TP-AGB end for 0.15 - 2.5 Mo stars
- Evolution of asymptotic giant branch stars I. Updated synthetic TP-AGB models and their basic calibration
- Evidence for TP-AGB stars in high redshift galaxies, and their effect on deriving stellar population parameters
- The Initial-Final Mass Relation: Direct Constraints at the Low Mass End
- Scaled solar tracks and isochrones in a large region of the Z-Y plane. II. From 2.5 to 20 solar masses
- The Distances to Open Clusters from Main-Sequence Fitting. III. Improved Accuracy with Empirically Calibrated Isochrones
- The Future is Now: the Formation of Single Low Mass White Dwarfs in the Solar Neighborhood
- High resolution optical spectroscopy of Praesepe white dwarfs
- A new detailed examination of white dwarfs in NGC3532 and NGC2287
- Deep MMT Transit Survey of the Open Cluster M37 I: Observations and Cluster Parameters
- The White Dwarf Population in NGC 1039 (M34) and the White Dwarf Initial-Final Mass Relation
- The Unevolved Main Sequence of Nearby Field Stars and the Open Cluster Distance Scale
Cited by in corpus (6)
- MESA Isochrones and Stellar Tracks (MIST). I: Solar-Scaled Models
- Carbon star formation as seen through the non-monotonic initial-final mass relation
- The Core Mass Growth and Stellar Lifetime of Thermally Pulsing Asymptotic Giant Branch Stars
- The Impact of Metallicity on the Rate of Type Ia Supernovae
- The impact of the uncertainties in the 12C(α,γ)16O reaction rate on the evolution of low- to intermediate-mass stars
- The Mid-IR Contribution Of Dust Enshrouded Stars In Six Nearby Galaxies