The dynamical escape of stars from star clusters affects the shape of the stellar mass function (MF) in these clusters, because the escape probability of a star depends on its mass. This is found in N-body simulations and has been approximated in analytical cluster models by fitting the evolution of the MF. Both approaches are naturally restricted to the set of boundary conditions for which the simulations were performed. Aims. The objective of this paper is to provide and to apply a simple physical model for the evolution of the MF in star clusters for a large range of the parameter space. It should also offer a new perspective on the results from N-body simulations. Methods. A simple, physically self-contained model for the evolution of t...
We measure how the slope of the stellar mass function (MF) changes as a function of clustercentric...
This work aims at studying the influence of the stellar mass-loss, resulting from the stellar evolut...
This work aims at studying the influence of the stellar mass-loss, resulting from the stellar evolut...
The dynamical escape of stars from star clusters affects the shape of the stellar mass function (MF)...
The dynamical escape of stars from star clusters affects the shape of the stellar mass function (MF)...
The dynamical escape of stars from star clusters affects the shape of the stellar mass function (MF)...
Context. The dynamical escape of stars from star clusters affects the shape of the stellar mass func...
We describe the interplay between stellar evolution and dynamical mass loss of evolving star cluster...
We describe the interplay between stellar evolution and dynamical mass loss of evolving star cluster...
We describe the interplay between stellar evolution and dynamical mass loss of evolving star cluster...
The evolution of the global stellar mass function of star clusters is studied based on a large set o...
The evolution of the global stellar mass function of star clusters is studied based on a large set o...
We report the results of a large set of N-body calculations aimed at studying the evolution of multi...
We measure how the slope α of the stellar mass function (MF) changes as a function of clustercentric...
We measure how the slope of the stellar mass function (MF) changes as a function of clustercentric...
We measure how the slope of the stellar mass function (MF) changes as a function of clustercentric...
This work aims at studying the influence of the stellar mass-loss, resulting from the stellar evolut...
This work aims at studying the influence of the stellar mass-loss, resulting from the stellar evolut...
The dynamical escape of stars from star clusters affects the shape of the stellar mass function (MF)...
The dynamical escape of stars from star clusters affects the shape of the stellar mass function (MF)...
The dynamical escape of stars from star clusters affects the shape of the stellar mass function (MF)...
Context. The dynamical escape of stars from star clusters affects the shape of the stellar mass func...
We describe the interplay between stellar evolution and dynamical mass loss of evolving star cluster...
We describe the interplay between stellar evolution and dynamical mass loss of evolving star cluster...
We describe the interplay between stellar evolution and dynamical mass loss of evolving star cluster...
The evolution of the global stellar mass function of star clusters is studied based on a large set o...
The evolution of the global stellar mass function of star clusters is studied based on a large set o...
We report the results of a large set of N-body calculations aimed at studying the evolution of multi...
We measure how the slope α of the stellar mass function (MF) changes as a function of clustercentric...
We measure how the slope of the stellar mass function (MF) changes as a function of clustercentric...
We measure how the slope of the stellar mass function (MF) changes as a function of clustercentric...
This work aims at studying the influence of the stellar mass-loss, resulting from the stellar evolut...
This work aims at studying the influence of the stellar mass-loss, resulting from the stellar evolut...