Low-Voltage Vircator as a Novel THz Source

被引:1
作者
Zamani, R. [1 ]
Shokri, B. [2 ,3 ]
机构
[1] Shahid Beheshti Univ, Dept Phys, Tehran 1983963113, Iran
[2] Shahid Beheshti Univ, Phys Dept, Tehran 1983963113, Iran
[3] Shahid Beheshti Univ, Laser Plasma Res Inst, Tehran 1983963113, Iran
关键词
Low voltage; Electron tubes; Cathodes; Voltage; Anodes; Power generation; Electron beams; Low-voltage vircator; particle-in-cell (PIC); radiation source; THz; vacuum electronic devices (VEDs); NONRELATIVISTIC ELECTRON-BEAM; VIRTUAL CATHODE; HIGH-POWER; OUTPUT; SIMULATION; EFFICIENCY;
D O I
10.1109/TED.2023.3307650
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
THz wave has various applications in human life, and many researchers are interested in related technologies specially designing reliable THz source. Vacuum electronic devices (VEDs) are high-power solutions that can be used in a range of microwave to THz frequencies. Low-voltage virtual cathode oscillator (vircator) is one type of VEDs that is usually used for broadband radiation a few gigahertz. However, in this work, for the first time, low-voltage vircator with decelerating voltage is designed for a novel THz source. The proposed electron device is simple and affordable compared to other THz sources. Wave generation is simulated by the particle-in-cell (PIC) numerical method. The effect of parameters, such as voltage, magnetic field, and main dimensions, is discussed. Two other designs for radiation at 0.14 and 0.37 THz are represented in addition to the main design at 0.23 THz. This low-voltage vircator can provide the power of tens of milliwatts in the THz band with a working voltage of 3 kV and a current of 300 mA.
引用
收藏
页码:5394 / 5399
页数:6
相关论文
共 42 条
  • [1] Experimental Study of an Axial Vircator With Resonant Cavity
    Baryshevsky, Vladimir
    Gurinovich, Alexandra
    Gurnevich, Evgeny
    Molchanov, Pavel
    [J]. IEEE TRANSACTIONS ON PLASMA SCIENCE, 2015, 43 (10) : 3507 - 3511
  • [2] Birdsall C., 1985, PLASMA PHYS VIA COMP
  • [3] Vacuum Electronic High Power Terahertz Sources
    Booske, John H.
    Dobbs, Richard J.
    Joye, Colin D.
    Kory, Carol L.
    Neil, George R.
    Park, Gun-Sik
    Park, Jaehun
    Temkin, Richard J.
    [J]. IEEE TRANSACTIONS ON TERAHERTZ SCIENCE AND TECHNOLOGY, 2011, 1 (01) : 54 - 75
  • [4] ENHANCED-EFFICIENCY, NARROW-BAND GIGAWATT MICROWAVE OUTPUT OF THE REDITRON OSCILLATOR
    DAVIS, HA
    FULTON, RD
    SHERWOOD, EG
    KWAN, TJT
    [J]. IEEE TRANSACTIONS ON PLASMA SCIENCE, 1990, 18 (03) : 611 - 617
  • [5] Full 3-D Simulation and Optimization of Gigawatt Class C-Band 20% Efficient Coaxial Vircator
    Denny, Bud
    Hammond, Jason
    Leach, Christopher
    [J]. IEEE TRANSACTIONS ON ELECTRON DEVICES, 2021, 68 (09) : 4687 - 4691
  • [6] The 2017 terahertz science and technology roadmap
    Dhillon, S. S.
    Vitiello, M. S.
    Linfield, E. H.
    Davies, A. G.
    Hoffmann, Matthias C.
    Booske, John
    Paoloni, Claudio
    Gensch, M.
    Weightman, P.
    Williams, G. P.
    Castro-Camus, E.
    Cumming, D. R. S.
    Simoens, F.
    Escorcia-Carranza, I.
    Grant, J.
    Lucyszyn, Stepan
    Kuwata-Gonokami, Makoto
    Konishi, Kuniaki
    Koch, Martin
    Schmuttenmaer, Charles A.
    Cocker, Tyler L.
    Huber, Rupert
    Markelz, A. G.
    Taylor, Z. D.
    Wallace, Vincent P.
    Zeitler, J. Axel
    Sibik, Juraj
    Korter, Timothy M.
    Ellison, B.
    Rea, S.
    Goldsmith, P.
    Cooper, Ken B.
    Appleby, Roger
    Pardo, D.
    Huggard, P. G.
    Krozer, V.
    Shams, Haymen
    Fice, Martyn
    Renaud, Cyril
    Seeds, Alwyn
    Stoehr, Andreas
    Naftaly, Mira
    Ridler, Nick
    Clarke, Roland
    Cunningham, John E.
    Johnston, Michael B.
    [J]. JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2017, 50 (04)
  • [7] PIC simulation of a two-foil vircator
    Dubinov, A. E.
    Tarakanov, P.
    [J]. LASER AND PARTICLE BEAMS, 2017, 35 (02) : 362 - 365
  • [8] Analysis of the dependence of the microwave generation power of a low-voltage vircator on controlling parameters
    Egorov, E. N.
    Kalinin, Yu. A.
    Koronovskii, A. A.
    Hramov, A. E.
    [J]. TECHNICAL PHYSICS, 2007, 52 (10) : 1387 - 1390
  • [9] Analysis of the formation of structures and chaotic dynamics in a nonrelativistic electron beam with a virtual cathode in the presence of a decelerating field
    Egorov, E. N.
    Kalinin, Yu. A.
    Koronovskii, A. A.
    Levin, Yu. I.
    Hramov, A. E.
    [J]. JOURNAL OF COMMUNICATIONS TECHNOLOGY AND ELECTRONICS, 2007, 52 (01) : 45 - 57
  • [10] Experimental study of scenarios of transitioning to broadband generation in a laboratory model of a low-voltage vircator
    Fokin A.S.
    Starodubov A.V.
    Kuznetsov N.N.
    Kalinin Y.A.
    [J]. Bulletin of the Russian Academy of Sciences: Physics, 2012, 76 (12) : 1333 - 1335