Abstract
A comprehensive linear model for the interaction between the MHD n = m = 1 internal kink and fast particles, based on the Hamiltonian angle-action formalism, is derived. On the basis of this model, a linear code, MHD-K, that solves partially analytically and numerically the kinetic-MHD dispersion relation non-perturbatively is presented. The impact of passing fast particles on the fishbone is shown to be an essential drive of the instability, where previous models highlighted only trapped particles as the driver of the kinetic-MHD instability. Resonant planes in phase space are presented, showing multiple resonant branches for both trapped and passing particles.
| Original language | English |
|---|---|
| Article number | 012003 |
| Journal | Journal of Physics: Conference Series |
| Volume | 1125 |
| Issue number | 1 |
| DOIs | |
| Publication status | Published - 23 Nov 2018 |
| Event | 2018 Joint Varenna-Lausanne International Workshop on the Theory of Fusion Plasmas - Varenna, Italy Duration: 27 Aug 2018 → 31 Aug 2018 |
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