Magnetic Stochasticity in Magnetically Confined Fusion Plasmas: Chaos of Field Lines and Charged Particle Dynamics

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This is the first book to systematically consider the modern aspects of chaotic dynamics of magnetic field lines and charged particles in magnetically confined fusion plasmas. The analytical models describing the generic features of equilibrium magnetic fields and magnetic perturbations in modern fusion devices are presented. It describes mathematical and physical aspects of onset of chaos, generic properties of the structure of stochastic magnetic fields, transport of charged particles in tokamaks induced by magnetic perturbations, new aspects of particle turbulent transport, etc. The presentation is based on the classical and new unique mathematical tools of Hamiltonian dynamics, like the action--angle formalism, classical perturbation theory, canonical transformations of variables, symplectic mappings, the Poincaré-Melnikov integrals. They are extensively used for analytical studies as well as for numerical simulations of magnetic field lines, particle dynamics, their spatial structures and statistical properties. The numerous references to articles on the latest development in the area are provided. The book is intended for graduate students and researchers who interested in the modern problems of magnetic stochasticity in magnetically confined fusion plasmas. It is also useful for physicists and mathematicians interested in new methods of Hamiltonian dynamics and their applications.

Author(s): Sadrilla Abdullaev (auth.)
Series: Springer Series on Atomic, Optical, and Plasma Physics 78
Edition: 1
Publisher: Springer International Publishing
Year: 2014

Language: English
Pages: 412
Tags: Atoms and Molecules in Strong Fields, Laser Matter Interaction; Plasma Physics; Numerical and Computational Physics; Applied and Technical Physics

Front Matter....Pages i-xxiv
Hamiltonian Representation of Magnetic Field....Pages 1-17
Magnetic Fields of Equilibrium Plasmas....Pages 19-45
Magnetic Field Perturbations....Pages 47-73
Hamilton Equations for Guiding Center Motion of Particles....Pages 75-91
Drift Orbits in Equilibrium Plasmas....Pages 93-120
Methods to Study the Hamiltonian Systems....Pages 121-163
Onset of Dynamical Chaos: Mathematical Aspects....Pages 165-199
Onset of Dynamical Chaos: Physical Aspects....Pages 201-225
Magnetic Field Structure Induced by Resonant Magnetic Perturbations in Tokamaks....Pages 227-261
Transport of Field Lines and Particles in a Stochastic Magnetic Field....Pages 263-293
Transport of Particles in a Turbulent Field....Pages 295-331
Back Matter....Pages 333-412