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205
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TITLE
CERTIFICATE
DECLARATION
ACKNOWLEDGEMENT
PREFACE
CONTENTS
1. Introduction
Heating
1. Neutral beam injection (NBI)
2. Electron cyclotron resonance heating (ECRH)
3.Lower hybrid resonance heating
4. Low frequency heating
a) Magnetic pumping
Ion cyclotron waves
cyclotron absorption mechanisIm
The two-ion hybrid resonance and minority heating
Calculations in tokamak geometry and antenna coupling
Experiment on ion cyclotron heating
CONCLUSION
References
2. Derivation of the dielectric tensor elements
1. Introduction
2. The dielectric tensor elements in a mildly relativistic plasms
The in the integrals
3. The dielectric tensor elements for a loss-cone plasca
APPENDIX A
APPENDIX B
APPENDIX C
References
3. Ion Cyclotron modes in weakly relativistic plasmas
1. Introduction
2. The dielectrics tensor elements
3. The ordering procedure
4. Explicit evaluation of the tensor elements
Evaluation of Kxx
Evaluation of Kxy
Evaluation of Kyy
5. Results
5.1 Analytical Results
5.2 Numerical Results
6. Conclusions
APPENDIX A
APPENDIX B
References
4. The influence of warm ions on ion cyclotron modes in a mildly relativistic fusion plasma
1. Introductions
2. The dielectric tensor elements
3. The ordering procedure
4. The tensor elements and the dispertion relation
5. Discussions
6. Results
7. Conclutions
APPENDIX A
APPENDIX B
References
5. Ion Cyclotron instabilities in a mildly relativistic hydrogen-deuterium fusion plasma
1. Introduction
2. The dielectric tensor elements
3. The ordering procedure
4. The tensor elements and the dispersion relations
5. Discurssion
6. Results
7. Conclusions
APPENDIX A
APPENDIX B
References
6. Stability of second harmonic wave propagation in magnetic mirror systems
1. Introductions
2. The dielectric tensor
3. The approximations scheme
4. Eplicit evaluation of the tensor elements
5. Dispersion elements
5.1 Propagation at the second harmonic of deuterium in a hydrogen deuterium plasca
5.2 Propagation at the second harmonic in a deuterium plasca
6. Discussion
7. Results
8. Conclusions
APPENDIX A
References
7. Stability of a zero frequency mode in a loss-cone plasma
1. Introduction
2. Analysis of the dispersion relation
3. Discussion
4.Results
5. Conclusions
References