Increasing the Pulse Energy of a Radially Converging Low-Energy High-Current Electron Beam

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The energy characteristics of a high-current electron gun with a radially converging beam have been studied. The cathode unit of the gun consisted of one or two ring sections with an inner diameter of 8 cm, each of which included 18 resistively decoupled arc plasma sources initiated by discharges over the dielectric surface. It is shown that electrostatic shielding that prevents the liberation of electrons and ultraviolet radiation from cathode and anode plasmas to the space behind the cathode decreases the probability of the breakdown development along the resistors of arc plasma sources and increases the beam pulse energy released in the anode approximately two times. In the case of two-sectioned cathode unit, the width of the beam autograph on the anode (melting trace) was ~7 cm at an axial distance between the centers of the sections of 4 cm.

作者简介

P. Kiziridi

Institute of High Current Electronics, Siberian Branch, Russian Academy of Sciences

Email: kiziridi_pavel@mail.ru
634055, Tomsk, Russia

G. Ozur

Institute of High Current Electronics, Siberian Branch, Russian Academy of Sciences

编辑信件的主要联系方式.
Email: ozur@lve.hcei.tsc.ru
634055, Tomsk, Russia

参考

  1. Abdullin E.N., Ivanov N.G., Losev V.F., Morozov A.V. // Laser and Particle Beams. 2013. V. 31. P. 1. https://doi.org/10.1017/S026303461300075X
  2. Бугаев А.С., Климов А.И., Коваль Н.Н., Кошелев В.И., Сочугов Н.С., Щанин П.М. Препринт ТНЦ СО АН СССР № 25. Томск, 1991. С. 21.
  3. Kovalchuk B.M., Polevin S.D., Tsygankov R.V., Zherlitsyn A.A. // IEEE Transactions on Plasma Science. 2010. V. 38. Issue 10. P. 2819. https://doi.org/10.1109/TPS.2010.2060367
  4. Engelko V.I., Kuznetsov V.S., Mueller G. // J. Applied Physics. 2009. V. 105. P. 023305. https://doi.org/10.1063/1.2996286
  5. Энгелько В.И., Ткаченко К.И., Русанов А.Е., Биржевой Г.А. // Вопросы атомной науки и техники. Серия: Ядерно-реакторные константы. 2015. № 4. С. 93.
  6. Кизириди П.П., Озур Г.Е. // ПТЭ. 2022. № 6. С. 61. https://doi.org/10.31857/S0032816222060143
  7. Кизириди П.П., Озур Г.Е. // Письма в ЖТФ. 2020. Т. 46. № 15. С. 47. https://doi.org/10.21883/PJTF.2020.15.49750.18364
  8. Кизириди П.П., Озур Г.Е. // ЖТФ. 2022. Т. 92. № 6. С. 876. https://doi.org/10.21883/JTF.2022.06.52518.316-21
  9. Озур Г.Е., Проскуровский Д.И. // Физика плазмы. 2018. Т. 44. № 1. С. 21. https://doi.org/10.7868/S0367292118010146

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