We discuss the performance of direct summation codes used in the simulation of astrophysical stellar systems on highly distributed architectures. These codes compute the gravitational interaction among stars in an exact way and have an O(N^2) scaling with the number of particles. They can be applied to a variety of astrophysical problems, like the evolution of star clusters, the dynamics of black holes, the formation of planetary systems, and cosmological simulations. The simulation of realistic star clusters with sufficiently high accuracy cannot be performed on a single workstation but may be possible on parallel computers or grids. We have implemented two parallel schemes for a direct N-body code and we study their performance on general...
Abstract. The simulation of N particles interacting in a gravitational force field is useful in astr...
We describe source code level parallelization for the {\tt kira} direct gravitational $N$-body integ...
We describe source code level parallelization for the kira direct gravitational N-body integrator, t...
We discuss the performance of direct summation codes used in the simulation of astrophysical stellar...
We present a performance analysis of different parallelization schemes for direct codes used in the ...
Direct-summation N-body algorithms compute the gravitational interaction between stars in an exact w...
Direct-summation N-body algorithms compute the gravitational interaction between stars in an exact w...
Direct-summation N-body algorithms compute the gravitational interaction between stars in an exact w...
We describe a new parallel N-body code for astrophysical simulations of systems of point masses inte...
AbstractSpecial high-accuracy direct force summation N-body algorithms and their relevance for the s...
Direct-summation N-body algorithms compute the gravitational interaction between stars in an exact w...
The main target of this work is the discussion of the modern techniques (software and hardware) apt ...
Fig. 1. Rendering (left) and computer representation (tree-code in green) of a collision between two...
N-Body simulations are a common method of modeling the interacting behavior between objects from the...
N-Body simulations are a common method of modeling the interacting behavior between objects from the...
Abstract. The simulation of N particles interacting in a gravitational force field is useful in astr...
We describe source code level parallelization for the {\tt kira} direct gravitational $N$-body integ...
We describe source code level parallelization for the kira direct gravitational N-body integrator, t...
We discuss the performance of direct summation codes used in the simulation of astrophysical stellar...
We present a performance analysis of different parallelization schemes for direct codes used in the ...
Direct-summation N-body algorithms compute the gravitational interaction between stars in an exact w...
Direct-summation N-body algorithms compute the gravitational interaction between stars in an exact w...
Direct-summation N-body algorithms compute the gravitational interaction between stars in an exact w...
We describe a new parallel N-body code for astrophysical simulations of systems of point masses inte...
AbstractSpecial high-accuracy direct force summation N-body algorithms and their relevance for the s...
Direct-summation N-body algorithms compute the gravitational interaction between stars in an exact w...
The main target of this work is the discussion of the modern techniques (software and hardware) apt ...
Fig. 1. Rendering (left) and computer representation (tree-code in green) of a collision between two...
N-Body simulations are a common method of modeling the interacting behavior between objects from the...
N-Body simulations are a common method of modeling the interacting behavior between objects from the...
Abstract. The simulation of N particles interacting in a gravitational force field is useful in astr...
We describe source code level parallelization for the {\tt kira} direct gravitational $N$-body integ...
We describe source code level parallelization for the kira direct gravitational N-body integrator, t...