An adaptive algorithm for n-body field expansions
arXiv:astro-ph/9805357 · doi:10.1086/300669
Abstract
An expansion of a density field or particle distribution in basis functions which solve the Poisson equation both provides an easily parallelized n-body force algorithm and simplifies perturbation theories. The expansion converges quickly and provides the highest computational advantage if the lowest-order potential-density pair in the basis looks like the unperturbed galaxy or stellar system. Unfortunately, there are only a handful of such basis in the literature which limits this advantage. This paper presents an algorithm for deriving these bases to match a wide variety of galaxy models. The method is based on efficient numerical solution of the Sturm-Liouville equation and can be used for any geometry with a separable Laplacian. Two cases are described in detail. First for the spherical case, the lowest order basis function pair may be chosen to be exactly that of the underlying model. The profile may be cuspy or have a core and truncated or of infinite extent. Secondly, the method yields a three-dimensional cylindrical basis appropriate for studying galaxian disks. In this case, the vertical and radial bases are coupled; the lowest order radial part of the basis function can be chosen to match the underlying profile only in the disk plane. Practically, this basis is still a very good match to the overall disk profile and converges in a small number of terms.
16 pages, 5 figures, submitted to AJ
Cited by in corpus (62)
- Gasoline: An adaptable implementation of TreeSPH
- Bar-driven dark halo evolution: a resolution of the cusp--core controversy
- Towards optimal softening in 3D N-body codes: I. Minimizing the force error
- N-body simulations of gravitational dynamics
- Quantifying the impact of the Large Magellanic Cloud on the structure of the Milky Way's dark matter halo using Basis Function Expansions
- Bar-Induced Evolution of Dark Matter Cusps
- The Bar-Halo Interaction - II. Secular evolution and the religion of N-body simulations
- Effect of the Milky Way on Magellanic Cloud structure
- Reflex motion in the Milky Way stellar halo resulting from the Large Magellanic Cloud infall
- The dynamics of tidal tails from massive satellites
- The effect of the deforming dark matter haloes of the Milky Way and the Large Magellanic Cloud on the Orphan-Chenab stream
- Quantifying the Stellar Halo's Response to the LMC's Infall with Spherical Harmonics
- Perturbations of spherical stellar systems during fly-by encounters
- A new code for orbit analysis and Schwarzschild modelling of triaxial stellar systems
- Direct Integration of the Collisionless Boltzmann Equation in Six-dimensional Phase Space: Self-gravitating Systems
- The dynamics of satellite disruption in cold dark matter haloes
- Noise-driven evolution in stellar systems: Theory
- Halo evolution in the presence of a disc bar
- A Halo Expansion (HEX) Technique for Approximating Simulated Dark Matter Haloes
- Dark Matter Trapping by Stellar Bars: The Shadow Bar
- EXP: N-body integration using basis function expansions
- Applying Schwarzschild's orbit superposition method to barred or non-barred disc galaxies
- Using Torque to Understand Barred Galaxy Models
- Noise-driven evolution in stellar systems: A universal halo profile
- Using Commensurabilities and Orbit Structure to Understand Barred Galaxy Evolution
- Internal Structure and Apsidal Motions of Polytropic Stars in Close Binaries
- Expansion Techniques for Collisionless Stellar Dynamical Simulations
- Constraining the Milky Way halo kinematics via its Linear Response to the Large Magellanic Cloud
- On the relevance of chaos for halo stars in the Solar Neighbourhood
- Models of Distorted and Evolving Dark Matter Halos
- Dark matter halo response to the disk growth
- Around The Way: Testing CDM with Milky Way Stellar Stream Constraints
- Special Features of Galactic Dynamics
- Tidally stripped halo stars from the Large Magellanic Cloud in the Galactic North
- Effects on the local dark matter distribution due to the Large Magellanic Cloud
- On the relevance of chaos for halo stars in the solar neighbourhood II
- New biorthogonal potential--density basis functions
- Using Multichannel Singular Spectrum Analysis to Study Galaxy Dynamics
- Appropriate SCF basis sets for orbital studies of galaxies and a `quantum-mechanical' method to compute them
- The Dynamical Response of Dark Matter to Galaxy Evolution Affects Direct-Detection Experiments
- Finite element modelling of perturbed stellar systems
- Dynamical Data Mining Captures Disc-Halo Couplings that Structure Galaxies
- Shaping the Milky Way: The interplay of mergers and cosmic filaments
- The Non-Axisymmetric Influence: Radius and Angle-Dependent Trends in a Barred Galaxy
- Efficient and accurate force replay in cosmological-baryonic simulations
- A two-parameter family of double-power-law biorthonormal potential-density expansions
- Direct Simulation Monte Carlo for astrophysical flows: I. Motivation and methodology
- Relaxation in N-body simulations of spherical systems
- Magnitude bias of microlensed sources towards the Large Magellanic Cloud
- Linear response theory and damped modes of stellar clusters
- Basis function expansions for galactic dynamics: Spherical versus cylindrical coordinates
- A general basis set algorithm for galactic haloes and discs
- EXP: a Python/C++ package for basis function expansion methods in galactic dynamics
- How do the dynamics of the Milky Way -- Large Magellanic Cloud system affect gamma-ray constraints on particle dark matter?
- Collisionless relaxation from near equilibrium configurations: Linear theory and application to tidal stripping
- Resolving local and global kinematic signatures of satellite mergers with billion particle simulations
- KRIOS: A new basis-expansion -body code for collisional stellar dynamics
- Mapping the Distorted Dark Matter Distribution of the LMC-SMC System Prior to Milky Way Infall with Basis Function Expansions
- The dark matter wake of a galactic bar revealed by multichannel Singular Spectral Analysis
- Investigating the long-term evolution of galaxies: Noise,cuspy halos and bars
- Basis sets and Coulomb resolutions in rotational coordinates
- A New 3D Potential-Density Basis Set