DocumentCode
1182147
Title
A novel overmoded slow-wave high-power microwave (HPM) Generator
Author
Zhang, Jun ; Zhong, Hui-Huang ; Luo, Ling
Author_Institution
Coll. of Optoelectron. Sci. & Eng., Nat. Univ. of Defense Technol., Changsha, China
Volume
32
Issue
6
fYear
2004
Firstpage
2236
Lastpage
2242
Abstract
We present the design and experimental results of a novel overmoded slow-wave high-power microwave (HPM) generator that is featured by its compactness, low-operation magnetic field, and potentially high power and high efficiency. The device includes two slow-wave structure (SWS) sections, a resonant cavity, and a tapered waveguide. The resonant cavity was well designed and was used to achieve the axial mode selection and to decrease the length of the SWS sections. The radial mode selection is achieved using the property of "surface wave" of the device to excite the TM01 mode while making the higher TM0n modes unexcited. The physical mechanisms of axial and radial mode selections ensure that the microwave is produced with a single mode and a narrow band. The feasibility of low magnetic field operation is also investigated based on the characteristics of the overmoded slow-wave devices. Experiments were carried out at the Spark-2 accelerator. At diode voltage of 474 kV, beam current of 5.2 kA, and guiding magnetic field strength of 0.6 T, a microwave was generated with power of 510 MW, mode of TM01, and frequency of 9.54 GHz. The relative half width of the frequency spectrum is Δf/f= 0.6%, and the beam-to-microwave efficiency is about 21% in our experiment.
Keywords
cavity resonators; microwave generation; slow wave structures; waveguides; 0.6 T; 474 kV; 5.2 kA; 510 MW; 9.54 GHz; SWS; Spark-2 accelerator; axial mode selection; beam-to-microwave efficiency; frequency spectrum; low magnetic field operation; narrow band microwaves; overmoded slow-wave high-power microwave generator; radial mode selection; resonant cavity; slow-wave structure; surface wave; tapered waveguide; Diodes; Frequency; High power microwave generation; Magnetic fields; Magnetic resonance; Microwave devices; Microwave generation; Narrowband; Power generation; Surface waves; High-power microwave (HPM); low magnetic field; overmoded slow-wave structure (SWS); resonant cavity;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2004.835970
Filename
1366516
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