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This school aims at preparing young researchers to tackle the current and anticipated challenges at magnetic fusion devices, and spreading the global knowledge required for a timely and competent exploitation of the ITER physics potential. The 5th edition is an overview of MHD interacting with energetic particles issues, with regard to ITER project.
Foreword: MHD and Energetic Particles
1
(2)
Sadruddin Benkadda
Nicolas Dubuit
Zwinglio Guimaraes-Filho
Committees
3
(2)
Group Photograph
5
(150)
Excitation of Alfven modes by energetic particles in magnetic fusion
7
(16)
N. N. Gorelenkov
Transport of fast particles in turbulent fields
23
(6)
M. J. Pueschel
Overview of nonlinear kinetic instabilities
29
(21)
H. L. Berk
Extension of conventional MHD equilibrium theory to model the fast particle effects
50
(15)
V. D. Pustovitov
Mode particle resonance in toroidal fusion devices
65
(15)
R. B. White
Elementary processes underlying alpha channeling in tokamaks
80
(11)
N.J. Fisch
Fast particle effects and microturbulence: Stability, transport and size scaling
91
(25)
R. Ganesh
Energetic-particle-driven global instabilities in helical plasmas and comparison with tokamak plasmas
116
(13)
Kazuo Toi
Characterization of energetic particle driven modes by spectral analysis in Tore Supra and FTU tokamaks
129
(12)
Z. O. Guimaraes-Filho
Nonlinear simulations of Alfven eigenmodes destabilized by energetic particles
141
(14)
Y. Todo
Author Index
155
Foreword: MHD and Energetic Particles.- Excitation of Alfven modes by energetic particles in magnetic fusion.- Transport of fast particles in turbulent fields.- Overview of nonlinear kinetic instabilities.- Extension of conventional MHD equilibrium theory to model the fast particle effects.- Mode particle resonance in toroidal fusion devices.- Elementary processes underlying alpha channeling in tokamaks.- Fast particle effects and microturbulence: Stability, transport and size scaling.- Energetic-particle-driven global instabilities in helical plasmas and comparison with tokamak plasmas.- Characterization of energetic particle driven modes by spectral analysis in Tore Supra and FTU tokamaks.- Nonlinear simulations of Alfven eigenmodes destabilized by energetic particles.