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Helical temperature perturbations associated with tearing modes in tokamak plasmas

Physics of Plasmas · 1995 · Vol. 2(3) · pp. 825–838
Richard Fitzpatrick

Abstract

An investigation is made into the electron temperature perturbations associated with tearing modes in tokamak plasmas. It is found that there is a critical magnetic island width below which the conventional picture where the temperature is flattened inside the separatrix is invalid. This effect comes about because of the stagnation of magnetic field lines in the vicinity of the rational surface and the finite parallel thermal conductivity of the plasma. Islands whose widths lie below the critical value are not destabilized by the perturbed bootstrap current, unlike conventional magnetic islands. This effect may provide an explanation for some puzzling experimental results regarding error field-induced magnetic reconnection. The critical island width is found to be fairly substantial in conventional tokamak plasmas, provided that the long mean-free path nature of parallel heat transport and the anomalous nature of perpendicular heat transport are taken into account in the calculation.

Magnetic confinement fusion researchIonosphere and magnetosphere dynamicsSolar and Space Plasma DynamicsPhysicsTokamakPlasmaTearingMagnetic fieldMagnetic reconnectionElectron temperatureRational surfaceMagnetohydrodynamicsCondensed matter physics
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References
Higher Transcendental Functions
Medical Entomology and Zoology · 1981 · 7,391 citations
Handbook of Mathematical Functions
American Journal of Physics · 1966 · 40,438 citations
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