Evolution of Mass Functions of Coeval Stars through Wind Mass Loss and Binary Interactions
arXiv:1504.01735 · doi:10.1088/0004-637X/805/1/20
Abstract
Accurate determinations of stellar mass functions and ages of stellar populations are crucial to much of astrophysics. We analyse the evolution of stellar mass functions of coeval main sequence stars including all relevant aspects of single- and binary-star evolution. We show that the slope of the upper part of the mass function in a stellar cluster can be quite different to the slope of the initial mass function. Wind mass loss from massive stars leads to an accumulation of stars which is visible as a peak at the high mass end of mass functions, thereby flattening the mass function slope. Mass accretion and mergers in close binary systems create a tail of rejuvenated binary products. These blue straggler stars extend the single star mass function by up to a factor of two in mass and can appear up to ten times younger than their parent stellar cluster. Cluster ages derived from their most massive stars that are close to the turn-off may thus be significantly biased. To overcome such difficulties, we propose the use of the binary tail of stellar mass functions as an unambiguous clock to derive the cluster age because the location of the onset of the binary tail identifies the cluster turn-off mass. It is indicated by a pronounced jump in the mass function of old stellar populations and by the wind mass loss peak in young stellar populations. We further characterise the binary induced blue straggler population in star clusters in terms of their frequency, binary fraction and apparent age.
21 pages, 22 figures, accepted for publication in ApJ
References in corpus (13)
- Binary interaction dominates the evolution of massive stars
- Pre-Supernova Evolution of Massive Single and Binary Stars
- The Geneva-Copenhagen Survey of the Solar neighbourhood II. New uvby calibrations and rediscussion of stellar ages, the G dwarf problem, age-metallicity diagram, and heating mechanisms of the disk
- Binary Star Origin of High Field Magnetic White Dwarfs
- BONNSAI: a Bayesian tool for comparing stars with stellar evolution models
- Efficiency of mass transfer in massive close binaries, Tests from double-lined eclipsing binaries in the SMC
- A maximum likelihood method for fitting colour-magnitude diagrams
- Mass transfer from a giant star to a main sequence companion and its contribution to long-orbital-period blue stragglers
- The influence of multiple stars on the high-mass stellar initial mass function and age-dating of young massive star clusters
- Primordial Binary Evolution and Blue Stragglers
- Evolution of stellar collision products in open clusters. II. A grid of low-mass collisions
- On Rejuvenation in Massive Binary Systems
- Biases on initial mass function determinations. II. Real multiple systems and chance superpositions
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