4.4 Article

Axisymmetric Alfven modes induced by energetic particles in tokamak plasmas

Journal

PHYSICS OF PLASMAS
Volume 29, Issue 4, Pages -

Publisher

AIP Publishing
DOI: 10.1063/5.0084856

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Funding

  1. National Key R&D Program of China [2019YFE03050002]

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The axisymmetric Alfven modes in the presence of energetic ions are studied using the MHD-kinetic hybrid model in tokamak plasmas. The dispersion relation of continuous spectra is derived for the coupled m = 0, +/- 2 poloidal harmonics. In addition to the conventional axisymmetric Alfven modes, the energetic ions can induce axisymmetric Alfven modes if certain conditions are met.
Axisymmetric Alfven modes in the presence of energetic ions are studied using the MHD-kinetic hybrid model for tokamak plasmas. The general dispersion relation of continuous spectra is derived for the coupled m = 0, +/- 2 poloidal harmonics. The dispersion relation is analyzed for the single pitch angle slowing down distribution of well circulating energetic particles. In addition to the conventional axisymmetric Alfven modes existing in the pure MHD description, axisymmetric Alfven modes are also induced by the energetic ions if the pressure ratio between the energetic ions and the magnetic energy density is larger than a critical value, and the transit frequency of the energetic ions is in resonance with the emerging Alfven modes. The existence of global Alfven eigenmodes is also discussed. Published under an exclusive license by AIP Publishing.

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