Dynamical friction in multi-component evolving globular clusters
arXiv:1409.4987 · doi:10.1088/0004-637X/795/2/169
Abstract
We use the Chandrasekhar formalism and direct N-body simulations to study the effect of dynamical friction on a test object only slightly more massive than the field stars, orbiting a spherically symmetric background of particles with a mass spectrum. The main goal is to verify whether the dynamical friction time (t_DF) develops a non-monotonic radial-dependence that could explain the bimodality of the Blue Straggler radial distributions observed in globular clusters. In these systems, in fact, relaxation effects lead to a mass and velocity radial segregation of the different mass components, so that mass-spectrum effects on t_DF are expected to be dependent on radius. We find that, in spite of the presence of different masses, t_DF is always a monotonic function of radius, at all evolutionary times and independently of the initial concentration of the simulated cluster. This because the radial dependence of t_DF is largely dominated by the total mass density profile of the background stars (which is monotonically decreasing with radius). Hence, a progressive temporal erosion of the BSS population at larger and larger distances from the cluster center remains the simplest and the most likely explanation of the shape of the observed BSS radial distributions, as suggested in previous works. We also confirm the theoretical expectation that approximating a multi-mass globular cluster as made of (averaged) equal-mass stars can lead to significant overestimates of t_DF within the half-mass radius.
In press on ApJ
References in corpus (8)
- Dynamical age differences among coeval star clusters as revealed by blue stragglers
- Discovery of Carbon/Oxygen depleted Blue Straggler Stars in 47 Tucanae: the chemical signature of a mass-transfer formation process
- The radial distribution of blue straggler stars and the nature of their progenitors
- Another Non-segregated Blue Straggler Population in a Globular Cluster: the Case of NGC 2419
- A Panchromatic Study of the Globular Cluster NGC 1904. I: The Blue Straggler Population
- Dynamical friction in modified Newtonian dynamics
- The Blue Straggler Population of the Globular Cluster M5
- Slow evolution of elliptical galaxies induced by dynamical friction
Cited by in corpus (3)
- Investigating mass segregation process in globular clusters with Blue Straggler Stars: the impact of dark remnants
- The binary mass transfer origin of the red blue straggler sequence in M30
- Probing the role of dynamical friction in shaping the BSS radial distribution. I - Semi-analytical models and preliminary N-body simulations