Gravothermal oscillations in multi-component models of star clusters
Abstract
In this paper, gravothermal oscillations are investigated in multi-component star clusters which have power law initial mass functions (IMF). For the power law IMFs, the minimum masses () were fixed and three different maximum stellar masses () were used along with different power-law exponents () ranging from 0 to -2.35 (Salpeter). The critical number of stars at which gravothermal oscillations first appear with increasing was found using the multi-component gas code SPEDI. The total mass () is seen to give an approximate stability condition for power law IMFs with fixed values of and independent of . The value is shown to give an approximate stability condition which is also independent of , though the critical value is somewhat higher for the steepest IMF that was studied. For appropriately chosen cases, direct N-body runs were carried out in order to check the results obtained from SPEDI. Finally, evidence of the gravothermal nature of the oscillations found in the N-body runs is presented.
Cite
@article{arxiv.1207.2672,
title = {Gravothermal oscillations in multi-component models of star clusters},
author = {Philip G. Breen and Douglas C. Heggie},
journal= {arXiv preprint arXiv:1207.2672},
year = {2015}
}
Comments
9 pages, 3 figures, 8 tables. Accepted for publication in MNRAS