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Nonlinear dynamics of beta-induced Alfvén eigenmode in tokamak
Author(s) -
H. S. Zhang,
Zhihong Lin,
Wenjun Deng,
I. Holod,
Z. X. Wang,
Yong Xiao,
Weili Zhang
Publication year - 2013
Publication title -
physics of plasmas
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.75
H-Index - 160
eISSN - 1089-7674
pISSN - 1070-664X
DOI - 10.1063/1.4776698
Subject(s) - physics , toroid , nonlinear system , tokamak , plasma , normal mode , excited state , phase space , atomic physics , quantum electrodynamics , classical mechanics , vibration , nuclear physics , quantum mechanics
The beta-induced Alfven eigenmode (BAE) excited by energetic particles in toroidal plasmas is studied in the global gyrokinetic simulations. It is found that the nonlinear BAE dynamics depends on the deviation from the marginality. In the strongly driven case, the mode exhibits a bursting state with fast and repetitive chirping. The nonlinear saturation is determined by the thermal ion nonlinearity and has no clear dependence on the linear growth rate. In the weakly driven case, the mode reaches a nearly steady state with small frequency chirping. The nonlinear dynamics is dominated by the energetic particle nonlinearity. In both cases, the nonlinear intensity oscillation and frequency chirping are correlated with the evolution of the coherent structures in the energetic particle phase space. Due to the radial variation of the mode amplitude and the radially asymmetric guiding center dynamics, the wave-particle interaction in the toroidal geometry is much more complex than the conventional one-dimensional...

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