Mass loss along the red giant branch in 46 Globular Clusters and their multiple populations
arXiv:2009.01080 · doi:10.1093/mnras/staa2639
Abstract
The location of Galactic Globular Clusters' (GC) stars on the horizontal branch (HB) should mainly depend on GC metallicity, the "first parameter", but it is actually the result of complex interactions between the red giant branch (RGB) mass loss, the coexistence of multiple stellar populations with different helium content, and the presence of a "second parameter" which produces dramatic differences in HB morphology of GCs of similar metallicity and ages (like the pair M3--M13). In this work, we combine the entire dataset from the Hubble Space Telescope Treasury survey and stellar evolutionary models, to analyse the HBs of 46 GCs. For the first time in a large sample of GCs, we generate population synthesis models, where the helium abundances for the first and the "extreme" second generations are constrained using independent measurements based on RGB stars. The main results are: 1) the mass loss of first generation stars is tightly correlated to cluster metallicity. 2) the location of helium enriched stars on the HB is reproduced only by adopting a higher RGB mass loss than for the first generation. The difference in mass loss correlates with helium enhancement and cluster mass. 3) A model of "pre-main sequence disc early loss", previously developed by the authors, explains such a mass loss increase and is consistent with the findings of multiple-population formation models predicting that populations more enhanced in helium tend to form with higher stellar densities and concentrations. 4) Helium-enhancement and mass-loss both contribute to the second parameter.
29 pages, 30 figures, 4 tables. Accepted for publication in MNRAS
References in corpus (19)
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. I. Overview of the Project and Detection of Multiple Stellar Populations
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. IX. The Atlas of Multiple Stellar Populations
- Spectroscopic and Photometric evidence of two stellar populations in the Galactic Globular Cluster NGC6121 (M4)
- The fraction of second generation stars in Globular Clusters from the analysis of the Horizontal Branch
- Mass loss on the red giant branch: the value and metallicity dependence of Reimers' η in globular clusters
- Multiple populations in globular clusters and their parent galaxies
- Accretion of pristine gas and dilution during the formation of multiple-population globular clusters
- Dust, pulsation, chromospheres and their role in driving mass loss from red giants in Galactic globular clusters
- Constraints on the Distance Moduli, Helium and Metal Abundances, and Ages of Globular Clusters from their RR Lyrae and Non-Variable Horizontal-Branch Stars. I. M3, M15, and M92
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters - XII. The RGB Bumps of multiple stellar populations
- Rapidly rotating second-generation progenitors for the blue hook stars of ω Cen
- Four stellar populations and extreme helium variation in the massive outer-halo globular cluster NGC 2419
- Constraints on the distance moduli, helium and metal abundances, and ages of globular clusters from their RR Lyrae and non-variable horizontal-branch stars. II. Multiple stellar populations in 47Tuc, M3, and M13
- An empirical mass-loss law for Population II giants from the Spitzer-IRAC survey of Galactic globular clusters
- Is helium the key parameter in the extended color spread of the first generation stars in M3?
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters -- XI. The horizontal branch in NGC\,6388 and NGC\,6441
- Mass loss of different stellar populations in Globular Clusters: the case of M4
- Multiple populations in globular clusters: Unified efforts from stellar evolution and chemical evolution models
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- Mass loss law for red giant stars in simple population globular clusters
- Multiple stellar populations in Asymptotic Giant Branch stars of Galactic Globular Clusters
- An old, metal-rich accreted stellar component in the Milky Way stellar disk
- On the role of dust and mass loss in the extended main sequence turnoff of star clusters: the case of NGC 1783
- Red Horizontal Branch stars: an asteroseismic perspective
- Globular Clusters UVIT Legacy Survey (GlobULeS) I. FUV-optical Color-Magnitude Diagrams for Eight Globular Clusters
- Evidence that Mass Loss on the Red Giant Branch Decreases with Metallicity
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- HST observations of the globular cluster NGC 6402 (M14) and its peculiar multiple populations
- Isochrone fitting of Galactic globular clusters -- IV. NGC6362 and NGC6723
- Connecting integrated RGB mass loss from asteroseismology and globular clusters
- Critical Metallicity of Cool Supergiant Formation. I. Effects on Stellar Mass Loss and Feedback
- Isochrone fitting of Galactic globular clusters -- V. NGC6397 and NGC6809 (M55)
- Chemo-dynamics and asteroseismic ages of seven metal-poor red giants from the Kepler field
- Multiple stellar populations at less evolved stages-II: no evidence of significant helium spread among NGC 1846 dwarfs
- AstroSat study of the globular cluster NGC 2298: probable evolutionary scenarios of hot HB stars
- A combined study of thermohaline mixing and envelope overshooting with PARSEC: Calibration to NGC 6397 and M4
- On the original composition of the gas forming first-generation stars in clusters: insights from HST and JWST
- Investigating the UV-excess in star clusters with -body simulations: predictions for future CSST observations
- A JWST project on 47 Tucanae: kinematics, energy equipartition and anisotropy of multiple populations
- UVIT study of UV bright stars in the globular cluster NGC 4147
- Pushing the boundaries of asteroseismic individual frequency modelling: unveiling two evolved very-low metallicity red giants
- Discovery of an extended Horizontal Branch in the Large Magellanic Cloud globular cluster NGC1835
- UVIT-HST-Gaia-VISTA study of KRON 3 in the Small Magellanic Cloud: A cluster with an extended red clump in UV
- Asteroseismically Inferred Ages of 132,000 Red Giants with TESS
- Study of UV bright sources in globular cluster NGC 4590 using Ultraviolet Imaging Telescope (UVIT) observations
- Globular Cluster UVIT Legacy Survey (GlobULeS) II. Evolutionary status of hot stars in M3 and M13
- The stellar to sub-stellar masses transition in 47 Tuc
- Inferring the efficiency of convective-envelope overshooting in Red Giant Branch stars
- Multiple stellar populations at less evolved stages-III: a possible helium spread in NGC 2210
- Horizontal branch structure, age, and chemical composition for very metal-poor extragalactic globular clusters
- RR Lyrae stars with variable mean magnitudes
- The role of mass loss in constraining quenching time in dwarf galaxies from AGB and RGB star counts
- The odd bunch: chrono-chemo-dynamics of sixteen unusual stars from Kepler
- He-enriched STAREVOL models for globular cluster multiple populations. Self-consistent isochrones from ZAMS to the TP-AGB phase
- Asteroseismology of red giants in the globular cluster 47 Tuc using the HST
- Constraining the original composition of the gas forming first-generation stars in globular clusters
- Noble gases Neon and argon: a role for the chemical patterns of multiple populations in globular clusters?