Collisional Transport in Magnetized Plasmas

Collisional Transport in Magnetized Plasmas
Title Collisional Transport in Magnetized Plasmas PDF eBook
Author Per Helander
Publisher Cambridge University Press
Pages 316
Release 2005-10-06
Genre Science
ISBN 9780521020985

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A graduate level text treating transport theory, an essential element of theoretical plasma physics.

Driven Rotation, Self-Generated Flow, and Momentum Transport in Tokamak Plasmas

Driven Rotation, Self-Generated Flow, and Momentum Transport in Tokamak Plasmas
Title Driven Rotation, Self-Generated Flow, and Momentum Transport in Tokamak Plasmas PDF eBook
Author John Rice
Publisher Springer Nature
Pages 158
Release 2022-01-13
Genre Science
ISBN 3030922669

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This book provides a comprehensive look at the state of the art of externally driven and self-generated rotation as well as momentum transport in tokamak plasmas. In addition to recent developments, the book includes a review of rotation measurement techniques, measurements of directly and indirectly driven rotation, momentum sinks, self-generated flow, and momentum transport. These results are presented alongside summaries of prevailing theory and are compared to predictions, bringing together both experimental and theoretical perspectives for a broad look at the field. Both researchers and graduate students in the field of plasma physics will find this book to be a useful reference. Although there is an emphasis on tokamaks, a number of the concepts are also relevant to other configurations.

Theory of Fusion Plasmas

Theory of Fusion Plasmas
Title Theory of Fusion Plasmas PDF eBook
Author Olivier Sauter
Publisher American Institute of Physics
Pages 400
Release 2008-12-02
Genre Science
ISBN 9780735406001

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The Joint Varenna-Lausanne International Workshop on Theory of Fusion Plasmas takes place every other year in a place particularly favorable for informal and in depth discussions. Invited and contributed papers present state-of-the art researches in theoretical plasma physics, covering all domains relevant to fusion plasmas. This workshop always allows a fruitful mix of experienced researchers and students, to allow for a better understanding of the key theoretical physics models and applications, such as: Theoretical issues related to burning plasmas; Anomalous Transport (Turbulence, Coherent Structures, Microinstabilities) RF Heating and Current Drive; Macroinstabilities; Plasma-Edge Physics and Divertors; Fast particles instabilities.

Sputtering by Particle Bombardment

Sputtering by Particle Bombardment
Title Sputtering by Particle Bombardment PDF eBook
Author Rainer Behrisch
Publisher Springer Science & Business Media
Pages 527
Release 2007-07-26
Genre Technology & Engineering
ISBN 3540445021

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This book provides a long-needed survey of new results. Especially welcome is a new summary of the measured and calculated sputtering yields with an algebraic approximation formula for the energy and angular dependence of the yields, which is useful for researchers who need sputtering yields for physics research or applied problems. The book offers a critical review of computational methods for calculating sputtering yields and also includes molecular dynamics calculations.

Tokamaks

Tokamaks
Title Tokamaks PDF eBook
Author John Wesson
Publisher Oxford University Press
Pages 828
Release 2011-10-13
Genre Science
ISBN 0199592233

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The tokamak is the principal tool in controlled fusion research. This book acts as an introduction to the subject and a basic reference for theory, definitions, equations, and experimental results. The fourth edition has been completely revised, describing their development of tokamaks to the point of producing significant fusion power.

Transport Processes in Multicomponent Plasma

Transport Processes in Multicomponent Plasma
Title Transport Processes in Multicomponent Plasma PDF eBook
Author V.M. Zhdanov
Publisher CRC Press
Pages 294
Release 2002-04-11
Genre Science
ISBN 9780415279208

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Transport Processes in Multicomponent Plasma is a revised and updated version of the original Russian edition. The book examines transport phenomena in multicomponent plasma and looks at important issues such as partially ionized gases, molecular gas mixtures and methods of calculating kinetic coefficients. It makes a logical progression from simpler to more general problems, and the results presented in the book may be used to calculate the kinetic coefficients of plasma in electric and magnetic fields. The author concludes by describing several practical applications such as electrical conductivity and Hall's effect in MHD-generators. Transport Processes in Multicomponent Plasma will be of interest to advanced students and specialized researchers working in various aspects of plasma physics, including both cold plasmas for industrial research and high temperature plasmas in fusion.

Plasma-Material Interactions in a Controlled Fusion Reactor

Plasma-Material Interactions in a Controlled Fusion Reactor
Title Plasma-Material Interactions in a Controlled Fusion Reactor PDF eBook
Author Tetsuo Tanabe
Publisher Springer Nature
Pages 209
Release 2021-03-08
Genre Science
ISBN 9811603286

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This book is a primer on the interplay between plasma and materials in a fusion reactor, so-called plasma–materials interactions (PMIs), highlighting materials and their influence on plasma through PMI. It aims to demonstrate that a plasma-facing surface (PFS) responds actively to fusion plasma and that the clarifying nature of PFS is indispensable to understanding the influence of PFS on plasma. It describes the modern insight into PMI, namely, relevant feedback to plasma performance from plasma-facing material (PFM) on changes in a material surface by plasma power load by radiation and particles, contrary to a conventional view that unilateral influence from plasma on PFM is dominant in PMI. There are many books and reviews on PMI in the context of plasma physics, that is, how plasma or plasma confinement works in PMI. By contrast, this book features a materials aspect in PMI focusing on changes caused by heat and particle load from plasma: how PFMs are changed by plasma exposure and then, accordingly, how the changed PFM interacts with plasma.