Numerical Simulation of Axisymmetric, Collisionless, Finite-β Plasma
- 1 August 1969
- journal article
- Published by AIP Publishing in Physics of Fluids
- Vol. 12 (8) , 1708-1716
- https://doi.org/10.1063/1.1692730
Abstract
A numerical simulation method for time-dependent, axisymmetric, collisionless, finite-β plasma is described and applied to mirror modes in θ pinches and to rotational and tearing modes in Astron. It is shown that the mirror modes cause an increase of axial thermal velocities and the long time development of a gross bumpy structure in the θ-pinch plasma. The Astron plasma layer first develops tearing modes in agreement with linear theory, but at later times the wavelength of this mode increases by coalescence until the plasma is completely reassembled.This publication has 4 references indexed in Scilit:
- Bounce Model Pinch StabilityPhysics of Fluids, 1967
- Stability of Thin Electron LayersPhysics of Fluids, 1962
- Exact Nonlinear Plasma OscillationsPhysical Review B, 1957
- Hydrodynamic Problems Involving Large Fluid DistortionsJournal of the ACM, 1957