The origin of the two populations of blue stragglers in M30
arXiv:1811.00058 · doi:10.1051/0004-6361/201833485
Abstract
We analyze the position of the two populations of blue stragglers in the globular cluster M30 in the Hertzsprung-Russell diagram. Both populations of blue stragglers are brighter than the cluster's turn-off, but one population (the blue blue-stragglers) align along the zero-age main-sequence whereas the (red) population is elevated in brightness (or colour) by mag. Based on stellar evolution and merger simulations we argue that the red population, which composes about 40\% of the blue stragglers in M 30, is formed at a constant rate of blue stragglers per Gyr over the last Gyr. The blue population is formed in a burst that started Gyr ago at a peak rate of blue stragglers per Gyr with an e-folding time scale of Gyr. We speculate that the burst resulted from the core collapse of the cluster at an age of about 9.8 Gyr, whereas the constantly formed population is the result of mass transfer and mergers through binary evolution. In that case about half the binaries in the cluster effectively result in a blue straggler.
Accepted for publication as Letter in A&A
References in corpus (7)
- Modules for Experiments in Stellar Astrophysics (MESA)
- A Binary Origin for Blue Stragglers in Globular Clusters
- Primordial Binary Evolution and Blue Stragglers
- Mixing in massive stellar mergers
- The binary mass transfer origin of the red blue straggler sequence in M30
- Contribution of primordial binary evolution to the two blue-straggler sequences in globular cluster M30
- Blue Straggler Stars in Globular Clusters: a powerful tool to probe the internal dynamical evolution of stellar systems
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