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Design of a 1-THz Fourth-Harmonic Gyrotron Driven by Axis-Encircling Electron Beam.

Authors :
Li, Fan-Hong
Du, Chao-Hai
Zhang, Zi-Wen
Li, Si-Qi
Gao, Zi-Chao
Liu, Pu-Kun
Ma, Guo-Wu
Huang, Qi-Li
Ma, Hong-Ge
Zhang, Liang
Cross, Adrian W.
Source :
IEEE Transactions on Electron Devices. Jun2022, Vol. 69 Issue 6, p3393-3399. 7p.
Publication Year :
2022

Abstract

In this article, the design of a fourth-harmonic gyrotron with 1-kW-level output power at 1 terahertz (THz) is presented. A unique advantage of this design is that, with a well-optimized magnetic-cusp large-orbit electron gun, the designed gyrotron can operate from first-harmonic to fourth-harmonic in multiple discrete bands by varying the confining magnetic field strength. By carefully balancing the competing modes, the gyrotron can be tuned to operate at six candidate modes, including TE1,2 for fundamental harmonic, TE2,3 and TE2,4 for second-harmonic, TE3,5 and TE3,6 for third-harmonic, and TE4,8 for fourth-harmonic interactions. As the main operating mode, the TE4,8 can generate a peak output power of 1.68 kW, with an output efficiency of about 2.1%, and a magnetically controlled frequency tuning range of about 1.5 GHz around 1 THz. The impact of the longitudinal nonuniformity of the cavity at high-harmonic interaction was also studied. It shows that a radial tolerance of several micrometers will significantly elevate the start-oscillation current and deteriorate output performance. This design is to produce a THz source with ultra-wideband tuning capability ranging from the submillimeter-wave to 1-THz bands. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00189383
Volume :
69
Issue :
6
Database :
Academic Search Index
Journal :
IEEE Transactions on Electron Devices
Publication Type :
Academic Journal
Accession number :
157582759
Full Text :
https://doi.org/10.1109/TED.2022.3168245