AbstractWe consider the following force field computation problem: given a cluster of n particles in three-dimensional space, compute the force exerted on each particle by the other particles. Depending on different applications, the pairwise interaction could be either gravitational or Lennard-Jones. In both cases, the force between two particles vanishes as the distance between them approaches to infinity. Since there are n(n − 1)/2 pairs, direct method requires Θ(n2) time for force-evaluation, which is very expensive for astronomical simulations. In 1985 and 1986, two famous O(n log n) time hierarchical tree algorithms were published by Appel (1985) and by Barnes and Hut (1986), respectively. In this paper, we show that Appel's algorithm...
We present tests of comparison between our versions of the Fast Multipole Algorithm (FMA) and the tr...
An improved implementation of an N-body code for simulating collisionless cosmological dynamics is p...
AbstractSpecial high-accuracy direct force summation N-body algorithms and their relevance for the s...
AbstractWe consider the following force field computation problem: given a cluster of n particles in...
AbstractWe consider the following force field computation problem: given a cluster of n particles in...
In this paper, we study data structures for use in N-body simulation. We concentrate on the spatial ...
We develop an algorithm that computes the gravitational potentials and forces on N point-masses int...
We describe in this paper an algorithm for solving the gravitational N-body problem using tree data ...
We report on an efficient adaptive N-body method which we have recently designed and implemented. Th...
The N-body problem is to simulate the motion of N particles under the influence of mutual force fiel...
N-body problems encompass a variety of fields such as electrostatics, molecularbiology and astrophys...
We present preliminary results on the parallelization of a Tree-Code for evaluating gravitational fo...
We report on an efficient adaptive N-body method which u~e have recently designed and implemented. ...
Abstract. The simulation of N particles interacting in a gravitational force field is useful in astr...
We have developed a new parallel tree method which will be called the forest method hereafter. This ...
We present tests of comparison between our versions of the Fast Multipole Algorithm (FMA) and the tr...
An improved implementation of an N-body code for simulating collisionless cosmological dynamics is p...
AbstractSpecial high-accuracy direct force summation N-body algorithms and their relevance for the s...
AbstractWe consider the following force field computation problem: given a cluster of n particles in...
AbstractWe consider the following force field computation problem: given a cluster of n particles in...
In this paper, we study data structures for use in N-body simulation. We concentrate on the spatial ...
We develop an algorithm that computes the gravitational potentials and forces on N point-masses int...
We describe in this paper an algorithm for solving the gravitational N-body problem using tree data ...
We report on an efficient adaptive N-body method which we have recently designed and implemented. Th...
The N-body problem is to simulate the motion of N particles under the influence of mutual force fiel...
N-body problems encompass a variety of fields such as electrostatics, molecularbiology and astrophys...
We present preliminary results on the parallelization of a Tree-Code for evaluating gravitational fo...
We report on an efficient adaptive N-body method which u~e have recently designed and implemented. ...
Abstract. The simulation of N particles interacting in a gravitational force field is useful in astr...
We have developed a new parallel tree method which will be called the forest method hereafter. This ...
We present tests of comparison between our versions of the Fast Multipole Algorithm (FMA) and the tr...
An improved implementation of an N-body code for simulating collisionless cosmological dynamics is p...
AbstractSpecial high-accuracy direct force summation N-body algorithms and their relevance for the s...