We describe a novel N-body code designed for simulations of the central regions of galaxies containing massive black holes. The code incorporates Mikkola's 'algorithmic' chain regularization scheme including post-Newtonian terms up to PN2.5 order. Stars moving beyond the chain are advanced using a fourth-order integrator with forces computed on a GRAPE board. Performance tests confirm that the hybrid code achieves better energy conservation, in less elapsed time, than the standard scheme and that it reproduces the orbits of stars tightly bound to the black hole with high precision. The hybrid code is applied to two sample problems: the effect of finite-N gravitational fluctuations on the orbits of the S-stars; and inspiral of an intermediat...
We developed a new direct-tree hybrid N-body algorithm for fully self-consistent N-body simulations ...
We have developed a new method for post-Newtonian, high-precision integration of stellar systems con...
We report on improvements made over the past two decades to our adaptive treecode N-body method (HOT...
We describe a novel N-body code designed for simulations of the central regions of galaxies containi...
We describe a novel N-body code designed for simulations of the central regions of galaxies containi...
We describe a novel N-body code designed for simulations of the central regions of galaxies containi...
We describe a novel N-body code designed for simulations of the central regions of galaxies containi...
We discuss the implementation of a new regular algorithm for simulation of the gravitational few-bod...
Fig. 1. Rendering (left) and computer representation (tree-code in green) of a collision between two...
The dynamics of a massive binary System in a galactic nucleus are presented. These are the first res...
Accurately modeling the evolution of a star cluster in a strong tidal field poses unique computation...
The main target of this work is the discussion of the modern techniques (software and hardware) apt ...
This paper presents a fast, economical particle-multiple-mesh N-body code optimized for large-N mode...
We discuss the performance of direct summation codes used in the simulation of astrophysical stellar...
We describe a hybrid technique for carrying out large N-Body simulations to study formation and evol...
We developed a new direct-tree hybrid N-body algorithm for fully self-consistent N-body simulations ...
We have developed a new method for post-Newtonian, high-precision integration of stellar systems con...
We report on improvements made over the past two decades to our adaptive treecode N-body method (HOT...
We describe a novel N-body code designed for simulations of the central regions of galaxies containi...
We describe a novel N-body code designed for simulations of the central regions of galaxies containi...
We describe a novel N-body code designed for simulations of the central regions of galaxies containi...
We describe a novel N-body code designed for simulations of the central regions of galaxies containi...
We discuss the implementation of a new regular algorithm for simulation of the gravitational few-bod...
Fig. 1. Rendering (left) and computer representation (tree-code in green) of a collision between two...
The dynamics of a massive binary System in a galactic nucleus are presented. These are the first res...
Accurately modeling the evolution of a star cluster in a strong tidal field poses unique computation...
The main target of this work is the discussion of the modern techniques (software and hardware) apt ...
This paper presents a fast, economical particle-multiple-mesh N-body code optimized for large-N mode...
We discuss the performance of direct summation codes used in the simulation of astrophysical stellar...
We describe a hybrid technique for carrying out large N-Body simulations to study formation and evol...
We developed a new direct-tree hybrid N-body algorithm for fully self-consistent N-body simulations ...
We have developed a new method for post-Newtonian, high-precision integration of stellar systems con...
We report on improvements made over the past two decades to our adaptive treecode N-body method (HOT...