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Dynamics of reversed shear Alfvén eigenmode and energetic particles during current ramp-up

Authors :
Sergio Briguglio
Fulvio Zonca
Gregorio Vlad
Tao Wang
Zhiyong Qiu
Wang, T.
Qiu, Z.
Zonca, F.
Briguglio, S.
Vlad, G.
Source :
Nuclear Fusion
Publication Year :
2020

Abstract

Hybrid MHD-gyrokinetic code simulations are used to investigate the dynamics of frequency sweeping reversed shear Alfv\'en eigenmode (RSAE) strongly driven by energetic particles (EPs) during plasma current ramp-up in a conventional tokamak configuration. A series of weakly reversed shear equilibria representing time slices of long timescale MHD equilibrium evolution is considered, where the self-consistent RSAE-EP resonant interactions on the short timescale are analyzed in detail. Both linear and nonlinear RSAE dynamics are shown to be subject to the non-perturbative effect of EPs by maximizing wave-EP power transfer. In linear stage, EPs induce evident mode structure and frequency shifts; meanwhile, RSAE saturates by radial decoupling with resonant EPs due to weak magnetic shear, and gives rise to global EP convective transport and non-adiabatic frequency chirping. The spatiotemporal scales of phase space wave-EP interactions are characterized by the perpendicular wavelength and wave-particle trapping time. The simulations provide insights into general as well as specific features of RSAE spectra and EP transport from experimental observations, and illustrate the fundamental physics of wave-EP resonant interaction with the interplay of magnetic geometry, plasma non-uniformity and non-perturbative EPs.<br />Comment: 36 pages, 21 figures

Details

Language :
English
ISSN :
00295515, 07413335, 13672630, 10090630, 00385646, 00444626, and 00321028
Database :
OpenAIRE
Journal :
Nuclear Fusion
Accession number :
edsair.doi.dedup.....3dbb7e7aa5820c8ae4c428145f6f4041