151
Views
3
CrossRef citations to date
0
Altmetric
Articles

Design and simulation study of double side-cavity gridless reltron with dual extraction sections

ORCID Icon &
Pages 291-304 | Received 09 Mar 2020, Accepted 08 Oct 2020, Published online: 21 Oct 2020

References

  • Miller RB, Mc Cullough WF, Lancaster KT, et al. Super-Reltron theory and experiments. IEEE Trans Plasma Sci. 1992 Jun;20(3):332–343. doi: 10.1109/27.142834
  • Benford J, Swegle JA, Schamiloglu E. High power microwaves. 3rd ed. Boca Raton (FL): CRC Press; 2016.
  • Miller RB, Muehlenweg CA, Habiger KW, et al. Super-reltron progress. IEEE Trans Plasma Sci. 1994 Oct;22(5):701–705. doi: 10.1109/27.338285
  • Miller RB, Habiger KW, Beggs WR, Jr., et al. Advances in super-reltron source development. Proc SPIE Intense Microw Pulses III. 1995;2557:2–8. doi: 10.1117/12.218534
  • Miller RB. Super-reltrons and pulsed power issues. IET Colloquium on Pulsed Power; London; 1997 Mar. p. 1–3.
  • Miller RB, Habiger KW. A review of recent progress in reltron tube design. Proceedings of the 12th International Conference on High-power Particle Beams; Israel; 1998 Jun. p. 740–743.
  • Miller RB. Pulse shortening in high-peak-power reltron tubes. IEEE Trans Plasma Sci. 1998 Jun;26(3):340–347. doi: 10.1109/27.700764
  • Soh S. Modeling, simulation and experimental study of the UNM low power reltron [PhD thesis]. University of New Mexico; 2012.
  • Mahto M, Jain PK. Investigation of a low-impedance reltron as a gigawatt HPM source. IEEE Trans Electron Devices. 2019 Apr;66(4):1950–1953. doi: 10.1109/TED.2019.2896161
  • Shee S, Dwivedi S. PIC simulation of a double side-cavity reltron, calculation of cavity reactance and comparison with conventional reltron. 2019 URSI Asia-Pacific Radio Science Conference (AP-RASC). IEEE; 2019 Mar. p. 1–4.
  • Marder BM, Clark MC, Bacon LD, et al. The split-cavity oscillator: a high-power e-beam modulator and microwave source. IEEE Trans Plasma Sci. 1992;20(3):312–331. doi: 10.1109/27.142833
  • Fernsler RF, Hubbard RF, Slinker SP. Foil focusing of electron beam. J Appl Phys. 1990;68(12):5985–5994. doi: 10.1063/1.346932
  • Barker RJ, Schamiloglu E. High-power microwaves sources and technologies. New York: IEEE Press; 2001. (RF and microwave technology).
  • CST Studio Suite – User's Manual, Electromagnetic Field Simulation Software, Vélizy-Villacoublay; France; 2020.
  • Liao SY. Microwave devices and circuits. 3rd ed. Upper Saddle River (NJ): Prentice Hall Inc.; 2006.
  • Soh S, Schamiloglu E, Miller RB. Circuit model of UNM educational reltron cavity. IEEE International Power Modulator and High Voltage Conference; Atlanta, GA, 2010 May. p. 233–237.
  • Popovic MA, Manolatou C, Watts M. Coupling-induced resonance frequency shifts in coupled dielectric multi-cavity filters. Opt Express. 2006 Feb;14(3):1208–1222. doi: 10.1364/OE.14.001208
  • Gilmour AS. Klystrons, traveling wave tubes, magnetrons, crossed-field amplifiers, and gyrotrons. Boston (MA): Artech House; 2011.
  • Shee S, Dwivedi S. Cold-test of reltron modulation section and PIC simulation study on output power and efficiency. Int J RF Microw Comput Aided Eng. 2020;30(3): e22103. doi:10.1002/mmce.22103
  • CST Microwave Studio, Workflow & Solver Overview. [Accessed 2017 Jul 13]. Available from: https://www.rose-hulman.edu/class/ee/HTML/ECE340/PDFs/MWS_Tutorials.pdf.
  • Clemens M, Weiland T. Discrete electromagnetism with the finite integration technique. Prog Electromag Res. 2001;32:65–87. doi: 10.2528/PIER00080103
  • Choi SH, Schamiloglu E, Miller RB. Initial operation of an ultra-compact, low voltage Reltron microwave source. In: PPPS-2001 Pulsed Power Plasma Sci. 2001; Techn. Papers Dig.; vol. 2. IEEE; 2001. p. 1626–1629.
  • Balk MC. Simulation possibilities of vacuum electronic devices with CST particle studio TM. IEEE International Vacuum Electronics Conference; 2008.
  • Weiland T. A discretization method for the solution of Maxwell's equations for six-component fields. AEÜ Int J Electron Commun. 1977;31:116.
  • Miller RB. Mechanism of explosive electron emission for dielectric fiber (velvet) cathodes. J Appl Phys. 1998 Oct;84(7):3880–3889. doi: 10.1063/1.368567
  • Mahto M, Jain PK. Design and simulation study of the HPM oscillator – reltron. IEEE Trans Plasma Sci. 2016 May;44(5):743–748. doi: 10.1109/TPS.2016.2543305

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.