Theoretical analysis of a thermal plasma-loaded relativistic traveling wave tube having corrugated slow wave structure with solid electron beam
- Various OICC Press Authors
Published in Issue 2023-11-17
How to Cite
1.
Press Authors O. Theoretical analysis of a thermal plasma-loaded relativistic traveling wave tube having corrugated slow wave structure with solid electron beam. J Theor Appl phys. 2023 Nov. 17;9(1). Available from: https://oiccpress.com/jtap/article/view/2192
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Abstract
AbstractA relativistic traveling wave tube with thermal plasma-filled corrugated waveguide is driven by a finite solid electron beam with the entire system immersed in a strong longitudinal magnetic field that magnetized plasma and electron beam. The dispersion relation for the relativistic traveling wave tube is obtained by linear fluid theory. The numerical results show that the growth rate decreases by increasing plasma temperature, waveguide radius, plasma density and electron beam energy. As show in this paper the effect of electron beam density and corrugation period is to increase growth rate.Keywords
- Dispersion Relation,
- Growth rate,
- RTWT,
- Solid electron beam,
- Thermal plasma
10.1007/s40094-014-0160-6