Theory of Nonneutral Plasmas

Theory of Nonneutral Plasmas
Title Theory of Nonneutral Plasmas PDF eBook
Author Ronald C. Davidson
Publisher Addison Wesley Longman
Pages 230
Release 1974
Genre Science
ISBN

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Physics of Nonneutral Plasmas

Physics of Nonneutral Plasmas
Title Physics of Nonneutral Plasmas PDF eBook
Author Davidson
Publisher Allied Publishers
Pages 760
Release 1990
Genre Nonneutral plasma
ISBN 9788177648485

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Physics Of Nonneutral Plasmas

Physics Of Nonneutral Plasmas
Title Physics Of Nonneutral Plasmas PDF eBook
Author Ronald C Davidson
Publisher World Scientific Publishing Company
Pages 755
Release 2001-10-22
Genre Science
ISBN 1911298194

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A nonneutral plasma is a many-body collection of charged particles in which there is not overall charge neutrality. The diverse areas of application of nonneutral plasmas include: precision atomic clocks, trapping of antimatter plasmas and antihydrogen production, quantum computers, nonlinear vortex dynamics and fundamental transport processes in trapped nonneutral plasmas, strongly-coupled one-component plasmas and Coulomb crystals, coherent radiation generation in free electron devices, such as free electron lasers, magnetrons and cyclotron masers, and intense charged particle beam propagation in periodic focusing accelerators and transport systems, to mention a few examples. Physics of Nonneutral Plasmas is a graduate-level text — complete with 138 assigned problems and the results from several classic experiments — which covers a broad range of topics related to the fundamental properties of collective processes and nonlinear dynamics of one-component and multispecies charged particle systems in which there is not overall charge neutrality. The subject matter is treated systematically from first principles, using a unified theoretical approach, and the emphasis is on the development of basic concepts that illustrate the underlying physical processes in circumstances where intense self fields play a major role in determining the evolution of the system. The theoretical analysis includes the full influence of dc space charge effects on detailed equilibrium, stability and transport properties. The statistical models used to describe the properties of nonneutral plasmas are based on the nonlinear Vlasov-Maxwell equations, the macroscopic fluid-Maxwell equations, or the Klimontovich-Maxwell equations, as appropriate, and extensive use is made of theoretical techniques developed in the description of multispecies electrically-neutral plasmas, as well as established techniques in classical mechanics, electrodynamics and statistical physics.Physics of Nonneutral Plasmas emphasizes basic physics principles, and the thorough presentation style is intended to have a lasting appeal to graduate students and researchers alike. Because of the advanced theoretical techniques developed for describing one-component charged particle systems, this book serves as a useful companion volume to Physics of Intense Charged Particle Beams in High Energy Accelerators by Ronald C Davidson and Hong Qin.

An Introduction to the Physics of Nonneutral Plasmas

An Introduction to the Physics of Nonneutral Plasmas
Title An Introduction to the Physics of Nonneutral Plasmas PDF eBook
Author Ronald C. Davidson
Publisher Addison Wesley Publishing Company
Pages 762
Release 1990
Genre Science
ISBN

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Fundamentals of Plasma Physics

Fundamentals of Plasma Physics
Title Fundamentals of Plasma Physics PDF eBook
Author Paul M. Bellan
Publisher Cambridge University Press
Pages 16
Release 2008-07-31
Genre Science
ISBN 1139449737

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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.

Plasma Science

Plasma Science
Title Plasma Science PDF eBook
Author National Research Council
Publisher National Academies Press
Pages 231
Release 1995-02-01
Genre Science
ISBN 0309052319

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Plasma science is the study of ionized states of matter. This book discusses the field's potential contributions to society and recommends actions that would optimize those contributions. It includes an assessment of the field's scientific and technological status as well as a discussion of broad themes such as fundamental plasma experiments, theoretical and computational plasma research, and plasma science education.

Handbook on Plasma Instabilities

Handbook on Plasma Instabilities
Title Handbook on Plasma Instabilities PDF eBook
Author Ferdinand Cap
Publisher Elsevier
Pages 481
Release 2012-12-02
Genre Science
ISBN 0323148751

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Handbook on Plasma Instabilities, Volume 1 serves as an introduction to the field of plasma physics and plasma instabilities. Topics covered include basic plasma physics, statistical plasma theory, and magnetohydrodynamics (MHD), as well as the many-species theory and plasma containment. The motion of individual particles, oscillations and waves, and MHD instabilities of a real and an ideal plasma are also discussed. This volume is comprised of 13 chapters and begins with a survey of the various applications of plasma sciences and an overview of the fundamental concepts of plasma physics. Basic plasma physics, the physics of instabilities, orbit theory, kinetic theory, MHD, and the many-fluid theory are then presented. The following chapters focus on the principles of plasma containment and waves in plasmas, together with the basic features of plasma instabilities and their classification. The classical MHD stability theory of an ideal and of a real plasma is also described. The final chapter is devoted to drift waves and drift instabilities in inhomogeneous plasmas, paying particular attention to the theory of gradient instabilities and the microscopic theory of waves in non-homogeneous collisionless plasmas. This handbook is intended for beginners in plasma physics and plasma instabilities and for physicists and engineers working actively in the field.