Skip to header Skip to main navigation Skip to main content Skip to footer

website of the Royal Observatory of Belgium

Home
Astronomy & Astrophysics

Main navigation

  • Home
  • Topics
    • Binary Stars
    • Massive Stars
      • 3-D Radiative Transfer Modelling
      • Colliding Winds
      • Hypergiants
      • Stellar Winds
    • Stellar Evolution
      • AGB Stars
      • Nebulae
    • Stellar Evolution
    • Stellar Rotation
    • Variable Stars
  • Projects
    • BINA
    • BISTRO
    • BRASS
    • Cloudy
    • Gaia
      • Gaia @ ROB
      • Gaia-ESO
      • Radial Velocities
    • HOACS
    • Hermes
    • LOK
    • MESS
    • MolPlan
      • MolPlan
      • Sakurai's Object
    • RUSTICCA
    • STARLAB
    • VMC
    • digit
  • Staff
  • Papers
  • Press Releases
  • Data and Codes
  • Meetings
  • Jobs
  • Outreach
    • Carte du Ciel
    • Posters
    • Refractor

Constraining the thermally pulsing asymptotic giant branch phase with resolved stellar populations in the Small Magellanic Cloud

06-2019

Pastorelli, G.; Marigo, P.; Girardi, L.; Chen, Y.; Rubele, S.; ... ; Groenewegen, M.A.T.;  Höfner, S.; Lebzelter, T.; et al.

Constraining the thermally pulsing asymptotic giant branch phase with resolved stellar populations in the Small Magellanic Cloud

 

Abstract :
The thermally pulsing asymptotic giant branch (TP-AGB) experienced by low- and intermediate-mass stars is one of the most uncertain phases of stellar evolution and the models need to be calibrated with the aid of observations. To this purpose, we couple high-quality observations of resolved stars in the Small Magellanic Cloud (SMC) with detailed stellar population synthesis simulations computed with the TRILEGAL code. The strength of our approach relies on the detailed spatially resolved star formation history of the SMC, derived from the deep near-infrared photometry of the VISTA survey of the Magellanic Clouds, as well as on the capability to quickly and accurately explore a wide variety of parameters and effects with the COLIBRI code for the TP-AGB evolution. Adopting a well-characterized set of observations - star counts and luminosity functions - we set up a calibration cycle along which we iteratively change a few key parameters of the TP-AGB models until we eventually reach a good fit to the observations. Our work leads to identify two best-fitting models that mainly differ in the efficiencies of the third dredge-up and mass-loss in TP-AGB stars with initial masses larger than about 3 M☉. On the basis of these calibrated models, we provide a full characterization of the TP-AGB stellar population in the SMC in terms of stellar parameters (initial masses, C/O ratios, carbon excess, mass-loss rates). Extensive tables of isochrones including these improved models are publicly available.

 

Keywords :  stars: AGB and post-AGB; stars: evolution; stars: carbon; stars: mass-loss; Magellanic Clouds; Astrophysics - Solar and Stellar Astrophysics; Astrophysics - Astrophysics of Galaxies 
Publication : Monthly Notices of the Royal Astronomical Society, Volume 485, Issue 4, p.5666-5692
DOI : 10.1093/mnras/stz725 
Bibcode : 2019MNRAS.485.5666P 

Powered by Drupal

administration

  • Log in

Legal Notices

  • Legal Notices

Copyright © 2026 Royal Observatory of Belgium - All rights reserved

OD3@ROB