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  • Book
  • © 2016

Plasma Physics for Controlled Fusion

Authors:

  • New edition of a classic monograph, recognized for its encyclopedic completeness
  • Covers design concept of ITER (international tokamak experimental
  • reactor), reversed field pinch, stellarator, tandem mirror and inertial
  • Written by an expert with 36 years of experience in teaching plasma physics and controlled fusion
  • Includes supplementary material: sn.pub/extras

Part of the book series: Springer Series on Atomic, Optical, and Plasma Physics (SSAOPP, volume 92)

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Table of contents (19 chapters)

  1. Front Matter

    Pages i-xii
  2. Nature of Plasma

    • Kenro Miyamoto
    Pages 1-9
  3. Magnetohydrodynamics

    • Kenro Miyamoto
    Pages 51-61
  4. Equilibrium

    • Kenro Miyamoto
    Pages 63-83
  5. Confinement of Plasma (Ideal Cases)

    • Kenro Miyamoto
    Pages 85-96
  6. Magnetohydrodynamic Instabilities

    • Kenro Miyamoto
    Pages 97-135
  7. Resistive Instabilities

    • Kenro Miyamoto
    Pages 137-161
  8. Boltzmann’s Equation

    • Kenro Miyamoto
    Pages 163-173
  9. Waves in Cold Plasmas

    • Kenro Miyamoto
    Pages 175-194
  10. Waves in Hot Plasmas

    • Kenro Miyamoto
    Pages 195-224
  11. Wave Heatings and Non-Inductive Current Drives

    • Kenro Miyamoto
    Pages 225-258
  12. Instabilities Driven by Energetic Particles

    • Kenro Miyamoto
    Pages 259-284
  13. Plasma Transport by Turbulence

    • Kenro Miyamoto
    Pages 285-325
  14. Development of Fusion Researches

    • Kenro Miyamoto
    Pages 327-336
  15. Tokamak

    • Kenro Miyamoto
    Pages 337-388
  16. Reversed Field Pinch

    • Kenro Miyamoto
    Pages 389-402
  17. Stellarator

    • Kenro Miyamoto
    Pages 403-422
  18. Open End System

    • Kenro Miyamoto
    Pages 423-438
  19. Inertial Confinement

    • Kenro Miyamoto
    Pages 439-453

About this book

This new edition presents the essential theoretical and analytical methods needed to understand the recent fusion research of tokamak and alternate approaches. The author describes magnetohydrodynamic and kinetic theories of cold and hot plasmas in detail. The book covers new important topics for fusion studies such as plasma transport by drift turbulence, which depend on the magnetic configuration and zonal flows. These are universal phenomena of microturbulence. They can modify the onset criterion for turbulent transport, instabilities driven by energetic particles as well as alpha particle generation and typical plasma models for computer simulation. The fusion research of tokamaks with various new versions of H modes are explained. The design concept of ITER, the international tokamak experimental reactor, is described for inductively driven operations as well as steady-state operations using non-inductive drives. Alternative approaches of reversed-field pinch and its relaxation process, stellator including quasi-symmetric system, open-end system of tandem mirror and inertial confinement are also explained. Newly added and updated topics in this second edition include zonal flows, various versions of H modes, and steady-state operations of tokamak, the design concept of ITER, the relaxation process of RFP, quasi-symmetric stellator, and tandem mirror. The book addresses graduate students and researchers in the field of controlled fusion.   




Authors and Affiliations

  • Tokyo, Japan

    Kenro Miyamoto

About the author

Dr. Kenro Miyamoto is Professor Emeritus, University of Tokyo.  He received his diploma in physics (1955) from University of Tokyo and his PhD in 1961 from University of Rochester. He engaged the constructions and experiments of stellarator and tokomak in the Institute of Plasma Physics, Nagoya University during 1964-1979. His main interest was confinement physics of stellarator and tokamak. He moved to Department of Physics, Faculty of Science, University of Tokyo in 1979. He started reversed field pinch (RFP) experiment and studied the relaxation and reconnection phenomena of RFP plasma (1979-1992). He was a member of working group Phase 2A (1981-1983) of INTOR (International Tokamak Reactor) and a member of Tokamak Physics Expert Group of ITER (International Tokamak Experimental Reactor) during 1999-2002. 

Bibliographic Information

Buy it now

Buying options

eBook USD 129.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 169.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 169.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access