Instabilities in a Confined Plasma is entirely devoted to a theoretical exposition of the subject of plasma instabilities in confined systems. The book is an important contribution to the study of plasma instabilities, not only in fusion devices such as the Tokamak but also in astrophysical phenomena. It covers toroidal confinement systems, internal MHD modes, small-scale MHD instabilities, MHD internal kink modes, MHD modes in collisionless and neoclassical regimes, drift-MHD modes, external kink modes, and Alfven eigenmodes.EQUILIBRIUM OF A PLASMA IN TOROIDAL CONFINEMENT SYSTEMS General results of equilibrium theory Equilibrium of a plasma in axisymmetric systems Equilibrium of a plasma in systems without axial symmetry
INTERNAL MHD MODES IN THE CYLINDRICAL APPROXIMATION Description of MHD perturbations in a cylindrical plasma Ideal MHD internal modes Resistive MHD modes in a cylindrical plasma
SMALL-SCALE MHD INSTABILITIES IN TOROIDAL CONFINEMENT SYSTEMS Description of marginally-stable small-scale ideal perturbations Small-scale MHD stability of a plasma in tokamaks Small-scale MHD stability of a plasma in complex magnetic systems Growth rates of ideal small-scale modes Resistive small-scale MHD modes in a toroidal geometry
MHD INTERNAL KINK MODES IN TOROIDAL GEOMETRY Description of ideal kink modes in toroidal geometry Ideal internal kink modes in toroidal confinement systems with low- and finite-pressure plasma Ideal internal kink modes in toroidal systems with high-pressure plasma Resistive internal kink modes in toroidal systems
MHD MODES IN COLLISIONLESS AND NEOCLASSICAL REGIMES Description of equilibrium and perturbations in collisionless and neoclassical plasmas Effects of plasma pressure anisotropy on MHD stability Effect of trapped particles on MHD stability Description of longitudinal visclˆ