Tearing modes transition from slow to fast rotation branch in the presence of magnetic feedback
Author:
Funder
European Union's Horizon 2020
Publisher
IOP Publishing
Subject
Condensed Matter Physics,Nuclear and High Energy Physics
Link
http://stacks.iop.org/0029-5515/54/i=12/a=122001/pdf
Reference38 articles.
1. Finite-Resistivity Instabilities of a Sheet Pinch
2. Interaction of tearing modes with external structures in cylindrical geometry (plasma)
3. Study on wall locking of multiple tearing modes in reversed field pinch plasmas
4. On free boundary instabilities induced by a resistive wall
5. Magnetohydrodynamics of Plasma Relaxation
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