Asymptotic Giant Branch predictions: theoretical uncertainties
arXiv:astro-ph/0112111 · doi:10.1051/0004-6361:20000293
Abstract
In this paper we investigate the level of agreement between observations and "new" Asymptotic Giant Branch (AGB) models, as produced by updating the physical inputs adopted in previous stellar computations. One finds that the new physics increases the predicted luminosity of Horizontal Branch (HB) and AGB stellar structures by a similar amount, keeping unchanged the predictions about the difference in luminosity between these two evolutionary phases. The best fit of selected globular clusters appears rather satisfactory, disclosing the relevance of the assumption on the mass of the Red Giant Branch (RGB) progenitor in assessing the distance modulus of moderately metal rich clusters. The still existing uncertainties related either to the input physics or to the efficiency of some macroscopic mechanisms, like convection or microscopic diffusion, are critically discussed, ruling out the occurrence of the so called "breathing pulses" during the central He exhaustion, in agreement with earlier suggestions.
8 pages, 6 figures
Cited by in corpus (26)
- The ACS Survey of Galactic Globular Clusters. IX. Horizontal Branch Morphology and the Second Parameter Phenomenon
- HST color-magnitude diagrams of 74 galactic globular clusters in the HST F439W and F555W bands
- Asteroseismology of 16000 Kepler Red Giants: Global Oscillation Parameters, Masses, and Radii
- A large stellar evolution database for population synthesis studies: VI. White dwarf cooling sequences
- Deep ACS Imaging of the Halo of NGC 5128: Reaching the Horizontal Branch
- The Pisa Stellar Evolution Data Base for low-mass stars
- Multivariate Analysis of Globular Cluster's Horizontal Branch Morphology: searching for the second parameter
- Sodium content as a predictor of the advanced evolution of globular cluster stars
- Population Synthesis in the Blue II. The Spectroscopic Age of 47 Tucanae
- The Dearth of UV-Bright Stars in M32: Implications for Stellar Evolution Theory
- The treatment of mixing in core helium burning models -- II. Constraints from cluster star counts
- Statistical errors and systematic biases in the calibration of the convective core overshooting with eclipsing binaries. A case study: TZ Fornacis
- Star Counts in the Globular Cluster Omega Centauri. I. Bright Stellar Components
- The treatment of mixing in core helium burning models -- III. Suppressing core breathing pulses with a new constraint on overshoot
- Evolutionary modelling of subdwarf B stars using MESA with the predictive mixing and convective premixing schemes
- Chemical analysis of Asymptotic Giant Branch stars in M62
- The Deepest HST Color-Magnitude Diagram of M32: Evidence for Intermediate-Age Populations
- On the missing second generation AGB stars in NGC6752
- A Re-Evaluation of the Evolved Stars in the Globular Cluster M13
- Exploring the Upper Red Giant and Asymptotic Giant Branches: the Globular Cluster M5
- The effects of near-core convective shells on the gravity modes of the subdwarf B pulsator KIC 10553698A
- Overshooting calibration and age determination from evolved binary system
- Spectra probing the number ratio of C- to M-type AGB stars in the NGC 6822 galaxy
- On the White Dwarf distances to Galactic Globular Clusters
- From Theory to Observations and viceversa: theoretical uncertainties and observational constraints
- Asteroseismic Constraints on the Models of Hot B Subdwarfs: Convective Helium-Burning Cores