English

Extended Main Sequence Turnoffs in Intermediate-Age Star Clusters: A Correlation Between Turnoff Width and Early Escape Velocity

Solar and Stellar Astrophysics 2014-11-25 v3 Astrophysics of Galaxies

Abstract

We present color-magnitude diagram analysis of deep Hubble Space Telescope imaging of a mass-limited sample of 18 intermediate-age (1 - 2 Gyr old) star clusters in the Magellanic Clouds, including 8 clusters for which new data was obtained. We find that all{\it all} star clusters in our sample feature extended main sequence turnoff (eMSTO) regions that are wider than can be accounted for by a simple stellar population (including unresolved binary stars). FWHM widths of the MSTOs indicate age spreads of 200-550 Myr. We evaluate dynamical evolution of clusters with and without initial mass segregation. Our main results are: (1) the fraction of red clump (RC) stars in secondary RCs in eMSTO clusters scales with the fraction of MSTO stars having pseudo-ages 1.35\leq 1.35 Gyr; (2) the width of the pseudo-age distributions of eMSTO clusters is correlated with their central escape velocity vescv_{\rm esc}, both currently and at an age of 10 Myr. We find that these two results are unlikely to be reproduced by the effects of interactive binary stars or a range of stellar rotation velocities. We therefore argue that the eMSTO phenomenon is mainly caused by extended star formation within the clusters; (3) we find that vesc15v_{\rm esc} \geq 15 km/s out to ages of at least 100 Myr for all{\it all} clusters featuring eMSTOs, while vesc12v_{\rm esc} \leq 12 km/s at all ages for two lower-mass clusters in the same age range that do not{\it not} show eMSTOs. We argue that eMSTOs only occur for clusters whose early escape velocities are higher than the wind velocities of stars that provide material from which second-generation stars can form. The threshold of 12-15 km/s is consistent with wind velocities of intermediate-mass AGB stars in the literature.

Keywords

Cite

@article{arxiv.1410.3840,
  title  = {Extended Main Sequence Turnoffs in Intermediate-Age Star Clusters: A Correlation Between Turnoff Width and Early Escape Velocity},
  author = {Paul Goudfrooij and Leo Girardi and Vera Kozhurina-Platais and Jason S. Kalirai and Imants Platais and Thomas H. Puzia and Matteo Correnti and Alessandro Bressan and Rupali Chandar and Leandro Kerber and Paola Marigo and Stefano Rubele},
  journal= {arXiv preprint arXiv:1410.3840},
  year   = {2014}
}

Comments

21 pages in emulateapj LaTeX style, incl. 12 figures, 5 tables, published in ApJ

R2 v1 2026-06-22T06:23:34.723Z