Marginal states of the resistive tearing mode with flow in cylindrical geometry
Abstract
The linear stability of tearing modes in a cylindrical plasma subject to a sub-Alfvénic equilibrium shear flow along the equilibrium magnetic field is considered. The equations in the resistive boundary layer at the rational surface are solved numerically using a Fourier transform combined with a finite-element approach. The behaviour of the growth rate as a function of the flow and the various parameters (including a perpendicular fluid viscosity) is obtained. Marginal stability curves showing the dependence of the familiar matching parameter Delta' with flow and shear are also given.
- Publication:
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Journal of Plasma Physics
- Pub Date:
- April 2004
- DOI:
- Bibcode:
- 2004JPlPh..70..155W