Collective Modes in Inhomogeneous Plasmas: Kinetic and Advanced Fluid Theory

Author:   Jan Weiland
Publisher:   Taylor & Francis Ltd
ISBN:  

9780750305891


Pages:   200
Publication Date:   01 January 1999
Format:   Hardback
Availability:   Awaiting stock   Availability explained


Our Price $416.99 Quantity:  
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Collective Modes in Inhomogeneous Plasmas: Kinetic and Advanced Fluid Theory


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Overview

Collective Modes in Inhomogeneous Plasmas: Kinetic and Advanced Fluid Theory presents the collective drift and MHD-type modes in inhomogeneous plasmas from the point of view of two-fluid and kinetic theory. Written by an internationally respected plasma transport theoretician, this introductory monograph emphasizes the description of the plasma rather than the geometry to present a more general approach to a large class of plasma problems. Starting with generalized fluid equations for low frequency phenomena, the author shows how drift waves and MHD-type modes can arise from the effects of inhomogeneities in the plasma. The kinetic description is then presented to reveal a host of phenomena ranging from vortex modes and finite Larmor radius effects to trapped and fast particle instabilities, transport, diffusion, and other advanced fluid effects. Theoretical and computational plasma physicists modeling confined plasmas will find this illustrated book a very valuable addition to their collection.

Full Product Details

Author:   Jan Weiland
Publisher:   Taylor & Francis Ltd
Imprint:   Institute of Physics Publishing
Dimensions:   Width: 15.60cm , Height: 1.70cm , Length: 23.50cm
Weight:   0.456kg
ISBN:  

9780750305891


ISBN 10:   0750305894
Pages:   200
Publication Date:   01 January 1999
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Out of Print
Availability:   Awaiting stock   Availability explained

Table of Contents

Introduction. Fluid Equations for Low Frequency Phenomena. Fluid Analysis of Low Frequency Modes Driven by Inhomogeneities. Kinetic Description of Low Frequency Modes in Inhomogeneous Plasma. Low Frequency Modes in Inhomogeneous Magnetic Fields. Instabilities Associated with Fast Particles in Toroidal Confinement Systems. Nonlinear Theory.

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