Is Mass Loss Along the Red Giant Branch of Globular Clusters Sharply Peaked? The Case of M3
Vittoria Caloi, Francesca A. D'Antona
Abstract
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Vittoria Caloi, Francesca A. D'Antona
Abstract
Open-access reader
There is a growing evidence that several globular clusters must contain multiple stellar generations, differing in helium content. This hypothesis has helped to interpret peculiar unexplained features in their horizontal branches. In this framework we model the peaked distribution of the RR Lyr periods in M3, that has defied explanation until now. At the same time, we try to reproduce the color distribution of M3 horizontal branch stars. We find that only a very small dispersion in mass loss along the red giant branch reproduces with good accuracy the observational data. The enhanced and variable helium content among cluster stars is at the origin of the extension in color of the horizontal branch, while the sharply peaked mass loss is necessary to reproduce the sharply peaked period distribution of RR Lyr variables. The dispersion in mass loss has to be ≤0.003 M ☉ , to be compared with the usually assumed values of ~0.02 M ☉ . This requirement represents a substantial change in the interpretation of the physical mechanisms regulating the evolution of globular cluster stars.
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There is a growing evidence that several globular clusters must contain multiple stellar generations, differing in helium content. This hypothesis has helped to interpret peculiar unexplained features in their horizontal branches. In this framework we model the peaked distribution of the RR Lyr periods in M3, that has defied explanation until now. At the same time, we try to reproduce the color distribution of M3 horizontal branch stars. We find that only a very small dispersion in mass loss along the red giant branch reproduces with good accuracy the observational data. The enhanced and variable helium content among cluster stars is at the origin of the extension in color of the horizontal branch, while the sharply peaked mass loss is necessary to reproduce the sharply peaked period distribution of RR Lyr variables. The dispersion in mass loss has to be ≤0.003 M ☉ , to be compared with the usually assumed values of ~0.02 M ☉ . This requirement represents a substantial change in the interpretation of the physical mechanisms regulating the evolution of globular cluster stars.
Key concepts: Globular cluster, Horizontal branch, Stars, Physics, Astrophysics, Red-giant branch, RR Lyrae variable, Red giant