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Nonlinear dynamo theory is central to understanding the magnetic
structures of planets, stars and galaxies. In chapters contributed
by some of the leading scientists in the field, this text explores
some of the recent advances in the field. Both kinetic and dynamic
approaches to the subject are considered, including fast dynamos,
topological methods in dynamo theory, physics of the solar cycle
and the fundamentals of mean field dynamo. Advances in Nonlinear
Dynamos is ideal for graduate students and researchers in
theoretical astrophysics and applied mathematics, particularly
those interested in cosmic magnetism and related topics, such as
turbulence, convection, and more general nonlinear physics.
Nonlinear dynamo theory is central to our understanding of the magnetic structures of planets, stars and galaxies. This volume presents an updated and coherent view of recent advances in this significant and expanding area with contributions from some of the leading authors in the field. Both kinetic and dynamic approaches to the subject are considered with topics including fast dynamos, topological methods in dynamo theory, physics of the solar cycle and the fundamentals of mean field dynamo. This volume provides a useful source of reference for graduate students and researchers in theoretical astrophysics and applied mathematics interested in cosmic magnetism and related topics such as turbulence, convection and more general nonlinear physics.
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