English

On the Link Between Energy Equipartition and Radial Variation in the Stellar Mass Function of Star Clusters

Astrophysics of Galaxies 2016-10-12 v1 Solar and Stellar Astrophysics

Abstract

We make use of NN-body simulations to determine the relationship between two observable parameters that are used to quantify mass segregation and energy equipartition in star clusters. Mass segregation can be quantified by measuring how the slope of a cluster's stellar mass function α\alpha changes with clustercentric distance r, and then calculating δα=dα(r)dln(r/rm)\delta_\alpha = \frac{d \alpha(r)}{d ln(r/r_m)} where rmr_m is the cluster's half-mass radius. The degree of energy equipartition in a cluster is quantified by η\eta, which is a measure of how stellar velocity dispersion σ\sigma depends on stellar mass m via σ(m)mη\sigma(m) \propto m^{-\eta}. Through a suite of NN-body star cluster simulations with a range of initial sizes, binary fractions, orbits, black hole retention fractions, and initial mass functions, we present the co-evolution of δα\delta_\alpha and η\eta. We find that measurements of the global η\eta are strongly affected by the radial dependence of σ\sigma and mean stellar mass and the relationship between η\eta and δα\delta_\alpha depends mainly on the cluster's initial conditions and the tidal field. Within rmr_m, where these effects are minimized, we find that η\eta and δα\delta_\alpha initially share a linear relationship. However, once the degree of mass segregation increases such that the radial dependence of σ\sigma and mean stellar mass become a factor within rmr_m, or the cluster undergoes core collapse, the relationship breaks down. We propose a method for determining η\eta within rmr_m from an observational measurement of δα\delta_\alpha. In cases where η\eta and δα\delta_\alpha can be measured independently, this new method offers a way of measuring the cluster's dynamical state.

Keywords

Cite

@article{arxiv.1609.09082,
  title  = {On the Link Between Energy Equipartition and Radial Variation in the Stellar Mass Function of Star Clusters},
  author = {Jeremy J. Webb and Enrico Vesperini},
  journal= {arXiv preprint arXiv:1609.09082},
  year   = {2016}
}

Comments

9 pages, 5 figures, 2 tables, Accepted for publication in MNRAS