The Fast Multiple Method for Gridless Particle Simulations.

Abstract

The numerical solution of the N- body problem is gravitation and electrostatics has traditionally been obtained via particle-in-cell methods (PIC) since direct evaluation of all pairwise interparticle forces, requiring 0(N-sq) operations, is too expensive. Recently, hierarchical solvers, which use data structures and lumped-force approximations, have made gridless simulations possible in O(N-log(N)) operations. In this paper, we explore the use of the fast multipole method (FMM) - a highly accurate order 0(N) algorithm - in particle simulations. The FMM is described with its relation to other methods. Technical considerations of gridless simulations such as discrete particle fluctuations, sampling errors and boundary conditions are discussed and compared with PIC methodology. Examples of electrostatic simulations in plasma physics are presented.

Open PDF

Document Details

Document Type
Technical Report
Publication Date
Sep 01, 1987
Accession Number
ADA189804

Entities

People

  • J. Ambrosiano
  • L. Greengard
  • Vladimir Rokhlin

Organizations

  • Yale University

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Boundary Value Problems
  • Computational Fluid Dynamics
  • Computational Science
  • Computations
  • Computer Science
  • Computers
  • Differential Equations
  • Electric Fields
  • Equations
  • Fluid Mechanics
  • Kinetic Energy
  • Long Wavelengths
  • Navier Stokes Equations
  • Partial Differential Equations
  • Physics
  • Simulations
  • Two Dimensional

Fields of Study

  • Physics

Readers

  • Finite Element Method (FEM) for solving Partial Differential Equations (PDEs)
  • Plasma Physics / Magnetohydrodynamics