Resistive Wall Mode and Neoclassical Tearing Mode Coupling in Rotating Tokamak Plasmas

Resistive Wall Mode and Neoclassical Tearing Mode Coupling in Rotating Tokamak Plasmas

Resistive Wall Mode and Neoclassical Tearing Mode Coupling in Rotating Tokamak Plasmas 150 150 UKAEA Opendata

Resistive Wall Mode and Neoclassical Tearing Mode Coupling in Rotating Tokamak Plasmas

A model system of equations has been derived to describe a toroidally rotating tokamak plasma, unstable to Resistive Wall Modes (RWMs) and metastable to Neoclassical Tearing Modes (NTMs), using a linear RWM model and a nonlinear NTM model. If no wall is present, the NTM growth shows the typical threshold/saturation island widths, whereas a linearly unstable kink mode grows exponentially in this model plasma system. When a resistive wall is present, the growth of the linearly unstable RWM is accelerated by an unstable island: a form of coupled RWM-NTM mode. Crucially, this coupled system has no threshold island width, giving the impression of a triggerless NTM, observed in high beta tokamak discharges. Increasing plasma rotation at the island location can mitigate its growth, decoupling the modes to yield a conventional RWM with no threshold width.

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03/07/2014