Description

Book Synopsis
It should appeal to plasma physicists interested in charged-particle dynamics, as well as to applied physicists needing to know more about micro- and millimeter-wave technologies.

Table of Contents

Foreword
Preface
Part I: Introduction to Gyrodevices
Chapter 1. Introduction
Chapter 2. Gyrotron Arrangement
Part II: Theory of Gyrotron Oscillators and Amplifiers
Chapter 3. Linear Theory of the Gyromonotron
Chapter 4. Nonlinear Theory of the Gyromonotron (Single-Mode Treatment)
Chapter 5. Mode Interaction in the Gyromonotron
Chapter 6. Linear Theory of the Gyro-TWT
Chapter 7. Nonlinear Theory of the Gyro-TWT
Chapter 8. Theory of Gyroklystrons
Chapter 9. Fluctuations: Intrinsic and Extrinsic Noise
Part III: The Development of Gyrodevices
Chapter 10. Gyrotron Oscillators for Controlled Fusion Experiments
Chapter 11. Gyroklystrons
Chapter 12. Gyro-Traveling-Wave Tubes
Chapter 13. Other Types of Gyrodevices
Summary
Appendix 1: Derivation of Gyro-Averaged Equations
Appendix 2: Wave Excitation by Electron Beams in Waveguides
Appendix 3: Derivation of the Self-Consistent Set of Equations for the Gyro-TWT
References
Index

Introduction to the Physics of Gyrotrons

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    A Hardback by Gregory S. Nusinovich, Victor Granatstein, Richard Temkin

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      View other formats and editions of Introduction to the Physics of Gyrotrons by Gregory S. Nusinovich

      Publisher: Johns Hopkins University Press
      Publication Date: Publication Date: 29/09/2004
      ISBN13: 9780801879210, 978-0801879210
      ISBN10: 0801879213

      Description

      Book Synopsis
      It should appeal to plasma physicists interested in charged-particle dynamics, as well as to applied physicists needing to know more about micro- and millimeter-wave technologies.

      Table of Contents

      Foreword
      Preface
      Part I: Introduction to Gyrodevices
      Chapter 1. Introduction
      Chapter 2. Gyrotron Arrangement
      Part II: Theory of Gyrotron Oscillators and Amplifiers
      Chapter 3. Linear Theory of the Gyromonotron
      Chapter 4. Nonlinear Theory of the Gyromonotron (Single-Mode Treatment)
      Chapter 5. Mode Interaction in the Gyromonotron
      Chapter 6. Linear Theory of the Gyro-TWT
      Chapter 7. Nonlinear Theory of the Gyro-TWT
      Chapter 8. Theory of Gyroklystrons
      Chapter 9. Fluctuations: Intrinsic and Extrinsic Noise
      Part III: The Development of Gyrodevices
      Chapter 10. Gyrotron Oscillators for Controlled Fusion Experiments
      Chapter 11. Gyroklystrons
      Chapter 12. Gyro-Traveling-Wave Tubes
      Chapter 13. Other Types of Gyrodevices
      Summary
      Appendix 1: Derivation of Gyro-Averaged Equations
      Appendix 2: Wave Excitation by Electron Beams in Waveguides
      Appendix 3: Derivation of the Self-Consistent Set of Equations for the Gyro-TWT
      References
      Index

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