English

Energetic-particle-modified global Alfv\'{e}n eigenmodes

Plasma Physics 2018-05-02 v3

Abstract

Fully self-consistent hybrid MHD/particle simulations reveal strong energetic particle modifications to sub-cyclotron global Alfv\'{e}n eigenmodes (GAE) in low-aspect ratio, NSTX-like conditions. Key parameters defining the fast ion distribution function -- the normalized injection velocity v0/vAv_0/v_A and central pitch -- are varied in order to study their influence on the characteristics of the excited modes. It is found that the frequency of the most unstable mode changes significantly and continuously with beam parameters, in accordance with the Doppler-shifted cyclotron resonances which drive the modes, and depending most substantially on v0/vAv_0/v_A. This unexpected result is present for both counter-propagating GAEs, which are routinely excited in NSTX, and high frequency co-GAEs, which have not been previously studied. Large changes in frequency without clear corresponding changes in mode structure could indicate the existence of a new energetic particle mode, referred to here as an energetic-particle-modified GAE (EP-GAE). Additional simulations conducted for a fixed MHD equilibrium demonstrate that the GAE frequency shift cannot be explained by the equilibrium changes due to energetic particle effects.

Keywords

Cite

@article{arxiv.1708.00498,
  title  = {Energetic-particle-modified global Alfv\'{e}n eigenmodes},
  author = {J. B. Lestz and E. V. Belova and N. N. Gorelenkov},
  journal= {arXiv preprint arXiv:1708.00498},
  year   = {2018}
}

Comments

17 pages, 10 figures

R2 v1 2026-06-22T21:04:06.260Z