Abstract
In this paper a cluster is modelled as a smooth potential (due to the cluster stars) plus the steady tidal field of the Galaxy. In this model there is a minimum energy below which stars cannot escape. Above this energy, however, the time-scale on which a star escapes varies with the orbital parameters of the star (mainly its energy) in a way which we attempt to quantify, with both theoretical arguments and computer simulations. Within the limitations of the model we show that the time-scale is long enough to complicate the interpretation of full N-body simulations of clusters, and that stars above the escape energy may remain bound to the cluster for about a Hubble time.
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CITATION STYLE
Fukushige, T., & Heggie, D. C. (2000). The time-scale of escape from star clusters. Monthly Notices of the Royal Astronomical Society, 318(3), 753–761. https://doi.org/10.1046/j.1365-8711.2000.03811.x
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