Gyrokinetic theory for arbitrary wavelength electromagnetic modes in tokamaks
Author(s) -
Hong Qin,
W. M. Tang,
G. Rewoldt
Publication year - 1997
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/304152
Subject(s) - physics , toroid , normal mode , tokamak , magnetohydrodynamics , formalism (music) , classical mechanics , computational physics , plasma , phase space , gyrokinetics , wavelength , kinetic energy , quantum mechanics , art , musical , visual arts , vibration
A linear gyrokinetic system for arbitrary wavelength electromagnetic modes is developed. A wide range of modes in inhomogeneous plasmas, such as the internal kink modes, the toroidal Alfven eigenmode (TAE) modes, and the drift modes, can be recovered from this system. The inclusion of most of the interesting physical factors into a single framework enables one to look at many familiar modes simultaneously and thus to study the modifications of and the interactions between them in a systematic way. Especially, the authors are able to investigate self-consistently the kinetic MHD phenomena entirely from the kinetic side. Phase space Lagrangian Lie perturbation methods and a newly developed computer algebra package for vector analysis in general coordinate system are utilized in the analytical derivation. In tokamak geometries, a 2D finite element code has been developed and tested. In this paper, they present the basic theoretical formalism and some of the preliminary results
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