To understand the effects of the initial rotation on the evolution of the tidally limited clusters with mass spectrum, we have performed N-body simulations of the clusters with different initial rotations and compared the results with those of the Fokker-Planck (FP) simulations. We confirmed that the cluster evolution is accelerated by not only the initial rotation but also the mass spectrum. For the slowly rotating models, the time evolutions of mass, energy and angular momentum show good agreements between N-body and FP simulations. On the other hand, for the rapidly rotating models, there are significant differences between these two approaches at the early stage of the evolutions because of the development of bar instability in N-body s...
The dynamical evolution of dense clusters of compact stars is studied using direct N-body simulation...
We present an analysis of the effect of a barred gravitational potential on the evolution of several...
We use direct N-body simulations to investigate the evolution of star clusters with large size-scale...
In this paper we examine the dynamical evolution of rotating globular clusters with direct N-body mo...
We present the first post-core-collapse models of initially rotating star clusters, using the n...
We present the results of a set of N-body simulations following the long-term evolution of the rotat...
The evolution of rotating, isolated clusters of stars up to core-collapse isinvestigated with n-body...
One of the main open questions of star formation is the process of star clusters aggregation. In my...
We present results from a suite of eight direct N-body simulations, performed with Nbody6++GPU, repr...
The dynamical evolution of dense stellar systems is simulated using a two-dimensional Fokker-Planck ...
We present the results of a set of N-body simulations following the long-term evolution of the rotat...
this paper, Sect. 4. 4. Fokker-Planck models remain the principal tool for studying the dynamical ev...
We have studied the dynamical evolution of rotating globular clusters with direct $N$-body models. O...
We present N-body simulations of realistic globular clusters containing initial mass function in the...
We investigate the long-term dynamical evolution of the internal kinematics of multimass rotating st...
The dynamical evolution of dense clusters of compact stars is studied using direct N-body simulation...
We present an analysis of the effect of a barred gravitational potential on the evolution of several...
We use direct N-body simulations to investigate the evolution of star clusters with large size-scale...
In this paper we examine the dynamical evolution of rotating globular clusters with direct N-body mo...
We present the first post-core-collapse models of initially rotating star clusters, using the n...
We present the results of a set of N-body simulations following the long-term evolution of the rotat...
The evolution of rotating, isolated clusters of stars up to core-collapse isinvestigated with n-body...
One of the main open questions of star formation is the process of star clusters aggregation. In my...
We present results from a suite of eight direct N-body simulations, performed with Nbody6++GPU, repr...
The dynamical evolution of dense stellar systems is simulated using a two-dimensional Fokker-Planck ...
We present the results of a set of N-body simulations following the long-term evolution of the rotat...
this paper, Sect. 4. 4. Fokker-Planck models remain the principal tool for studying the dynamical ev...
We have studied the dynamical evolution of rotating globular clusters with direct $N$-body models. O...
We present N-body simulations of realistic globular clusters containing initial mass function in the...
We investigate the long-term dynamical evolution of the internal kinematics of multimass rotating st...
The dynamical evolution of dense clusters of compact stars is studied using direct N-body simulation...
We present an analysis of the effect of a barred gravitational potential on the evolution of several...
We use direct N-body simulations to investigate the evolution of star clusters with large size-scale...