Fundamentals of Plasma Physics

Основы физики плазмы
Paul M. Bellan
2006-04-06

Landau dampingadiabatic invariancemagnetic reconnectionmagnetohydrodynamic stabilityplasma physics
This rigorous explanation of plasmas is relevant to diverse plasma applications such as controlled fusion, astrophysical plasmas, solar physics, magnetospheric plasmas, and plasma thrusters. More thorough than previous texts, it exploits new powerful mathematical techniques to develop deeper insights into plasma behavior. After developing the basic plasma equations from first principles, the book explores single particle motion with particular attention to adiabatic invariance. The author then examines types of plasma waves and the issue of Landau damping. Magnetohydrodynamic equilibrium and stability are tackled with emphasis on the topological concepts of magnetic helicity and self-organization. Advanced topics follow, including magnetic reconnection, nonlinear waves, and the Fokker–Planck treatment of collisions. The book concludes by discussing unconventional plasmas such as non-neutral and dusty plasmas. Written for beginning graduate students and advanced undergraduates, this text emphasizes the fundamental principles that apply across many different contexts.
1
Advanced coverage includes magnetic reconnection, nonlinear waves, collisional Fokker–Planck theory, and unconventional non-neutral and dusty plasmas.
2
It develops single-particle plasma dynamics with particular emphasis on adiabatic invariance and its role in particle motion.
3
Magnetic helicity and self-organization are emphasized as key topological concepts in magnetohydrodynamic behavior.
4
The book presents a rigorous, first-principles framework for understanding plasma behavior across fusion, astrophysical, solar, magnetospheric, and thruster applications.
5
The text provides detailed treatments of plasma waves, Landau damping, and magnetohydrodynamic equilibrium and stability.

plasmas

fundamental plasma behavior and governing physical phenomena, including particle motion, plasma waves, Landau damping, magnetohydrodynamic equilibrium and stability, magnetic reconnection, nonlinear waves, collisions, and unconventional plasma states

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2006-04-06
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Paul M. Bellan
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