A 0.33-THz second-harmonic frequency-tunable gyrotron
本文关键词:A 0.33-THz second-harmonic frequency-tunable gyrotron
更多相关文章: gyrotron mode transition second harmonic frequency tuning terahertz
【摘要】:Dynamics of the axial mode transition process in a 0.33-THz second-harmonic gyrotron is investigated to reveal the physical mechanism of realizing broadband frequency tuning in an open cavity circuit. A new interaction mechanism about propagating waves, featured by wave competition and wave cooperation, is presented and provides a new insight into the beam-wave interaction. The two different features revealed in the two different operation regions of low-order axial modes(LOAMs) and high-order axial modes(HOAMs) respectively determine the characteristic of the overall performance of the device essentially. The device performance is obtained by the simulation based on the time-domain nonlinear theory and shows that using a 12-kV/150_(-mA) electron beam and TE_(-3,4) mode, the second harmonic gyrotron can generate terahertz radiations with frequency-tuning ranges of about 0.85 GHz and 0.60 GHz via magnetic field and beam voltage tuning,respectively. Additionally, some non-stationary phenomena in the mode startup process are also analyzed. The investigation in this paper presents guidance for future developing high-performance frequency-tunable gyrotrons toward terahertz applications.
【作者单位】: Institute
【关键词】: gyrotron mode transition second harmonic frequency tuning terahertz
【基金】:Project supported by the National Natural Science Foundation of China(Grant Nos.61471007,61531002,61522101,and 11275206) the Seeding Grant for Medicine and Information Science of Peking University,China(Grant No.2014-MI-01)
【分类号】:TN12
【正文快照】: 1.Introductionto be f=28s B0/γ.So one can see that a very strong magneticfield is required when the gyrotron operates at THz band in theTerahertz(THz)wave has attracted extensive attentionfundamental mode,but the magnetic field can be significantlyin ma
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