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Particle-in-cell

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In plasma physics, the particle-in-cell (PIC) method refers to a technique used to solve a certain class of partial differential equations. In this method, individual particles (or fluid elements) in a Lagrangian frame are tracked in continuous phase space, whereas moments of the distribution such as densities and currents are computed simultaneously on Eulerian (stationary) mesh points.

~16 min read

Encyclopedic overview

14 sections
Contents
  • Technical aspects
  • Basics of the PIC plasma simulation technique
  • Super-particles
  • The particle mover
  • The field solver
  • Particle and field weighting
  • Collisions
  • Accuracy and stability conditions
  • Applications
  • Electromagnetic particle-in-cell computational applications
  • See also
  • References
  • Bibliography
  • External links

In plasma physics, the particle-in-cell (PIC) method refers to a technique used to solve a certain class of partial differential equations. In this method, individual particles (or fluid elements) in a Lagrangian frame are tracked in continuous phase space, whereas moments of the distribution such as densities and currents are computed simultaneously on Eulerian (stationary) mesh points.

PIC methods were already in use as early as 1955, even before the first Fortran compilers were available. The method gained popularity for plasma simulation in the late 1950s and early 1960s by Buneman, Dawson, Hockney, Birdsall, Morse and others. In plasma physics applications, the method amounts to following the trajectories of charged particles in self-consistent electromagnetic (or electrostatic) fields computed on a fixed mesh.

Excerpted from Wikipedia’s “Particle-in-cell” article, available under the CC BY-SA 4.0 licence.

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