Abstract
We present the results of a new study of mass segregation in two-component star clusters, based on a large number of numerical N-body simulations using our recently developed dynamical Monte Carlo code. Specifically, we follow the dynamical evolution of clusters containing stars with individual masses m_1 as well as a tracer population of objects with individual masses m_2=\mu m_1, using N=10^5 total stars. For heavy tracers, which could represent stellar remnants such as neutron stars or black holes in a globular cluster, we characterize in a variety of ways the tendency for these objects to concentrate in or near the cluster core. In agreement with simple theoretical arguments, we find that the characteristic time for this mass segregation process varies as 1/\mu. For models with very light tracers (\mu
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CITATION STYLE
Fregeau, J. M., Joshi, K. J., Portegies Zwart, S. F., & Rasio, F. A. (2002). Mass Segregation in Globular Clusters. The Astrophysical Journal, 570(1), 171–183. https://doi.org/10.1086/339576
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