Systematic Study of Key Components for a Coaxial-Cavity Gyrotron for DEMO
The physical design of cavity and magnetron injection gun (MIG) for a realistic, DEMO-compatible, coaxial-cavity 238 GHz 2 MW CW fusion gyrotron is developed in this work, having auxiliary frequencies at 170 GHz and 204 GHz. Novel systematic approaches towards multi-frequency mode selection, magnet...
Gorde:
| Egile nagusia: | |
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| Formatua: | Online |
| Hizkuntza: | ingelesa |
| Argitaratua: |
KIT Scientific Publishing
2021
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| Gaiak: | |
| Sarrera elektronikoa: | 34646 |
| Etiketak: |
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Antzeko izenburuak: Systematic Study of Key Components for a Coaxial-Cavity Gyrotron for DEMO
- Pushing the KIT 2 MW Coaxial-Cavity Short-Pulse Gyrotron Towards a DEMO Relevant Design
- Design studies towards a 4 MW 170 GHz coaxial-cavity gyrotron
- A First 2 MW-Class (136)/170/204 GHz Multi-Frequency Gyrotron Pre-Prototype for DEMO: Design, Construction and Key Components Verification
- Feasibility and Operational Limits for a 236 GHz Hollow-Cavity Gyrotron for DEMO
- Influence of Emitter Surface Roughness and Emission Inhomogeneity on Efficiency and Stability of High Power Fusion Gyrotrons
- Design and Experimental Investigation of a Second Harmonic 20 kW Class 28 GHz Gyrotron for Evaluation of New Emitter Technologies