Physical Review Letters · 2015 · 51 citations · 29 references
Fast Reconnection RateEngineeringFluid MechanicsPlasma PhysicsSpace Plasma PhysicPlasma SimulationMagnetohydrodynamicsCoaxial Helicity InjectionAstrophysical ReconnectionPhysicsPlasma InstabilitySpace WeatherPlasmoid InstabilityMagnetospheric PlasmaAstrophysicsNatural SciencesApplied PhysicsAstrophysical PlasmaPlasmoids Formation
The formation of an elongated Sweet-Parker current sheet and a transition to plasmoid instability has for the first time been predicted by simulations in a large-scale toroidal fusion plasma in the absence of any preexisting instability. Plasmoid instability is demonstrated through resistive MHD simulations of transient coaxial helicity injection experiments in the National Spherical Torus Experiment (NSTX). Consistent with the theory, fundamental characteristics of the plasmoid instability, including fast reconnection rate, have been observed in these realistic simulations. Motivated by the simulations, experimental camera images have been revisited and suggest the existence of reconnecting plasmoids in NSTX. Global, system-size plasmoid formation observed here should also have strong implications for astrophysical reconnection, such as rapid eruptive solar events.
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Finite-Resistivity Instabilities of a Sheet Pinch
H. P. Furth, J. Killeen, M. N. Rosenbluth · The Physics of Fluids · 1963 · 2.5K citations
Magnetic reconnection via current sheets
D. Biskamp · The Physics of Fluids · 1986 · 711 citations