Influence of the gas type on the electrical strength of the accelerating pro-gap of the fore-vacuum plasma source of electrons | Izvestiya vuzov. Fizika. 2022. № 11. DOI: 10.17223/00213411/65/11/26

Influence of the gas type on the electrical strength of the accelerating pro-gap of the fore-vacuum plasma source of electrons

The electrical strength of the accelerating gap of a fore-vacuum plasma electron source is compared for different working gases: argon, nitrogen, oxygen, and helium. The dependences of the limiting electron emission current, above which breakdown occurs, on the voltage across the accelerating gap are presented. It has been established that the limiting emission currents are determined by the thickness of the emission electrode, the diameter of the holes in it, as well as the gas type and pressure. It has been established that for all gases the limiting emission currents decrease with increasing pressure. The limiting pressures, when exceeded, breakdown occurs, decrease in the series: helium, oxygen, nitrogen, argon. For different experimental conditions, the dependences of the limiting emission currents on the accelerating voltage can be both monotonically growing and containing an extremum.

Download file
Counter downloads: 26

Keywords

forevacuum, plasma electron source, emission plasma, initiation and maintenance of a plasma-forming discharge, formation of a plasma boundary

Authors

NameOrganizationE-mail
Burdovitsin V.A.Tomsk State University of Control Systems and Radioelectronicsburdov@fet.tusur.ru
Bakeev I. Y.U.Tomsk State University of Control Systems and Radioelectronicsbakeeviyu@mail.ru
Karpov K.I.Tomsk State University of Control Systems and Radioelectronicskkarpov99@gmail.com
Ngon A Kiki L.J.Tomsk State University of Control Systems and Radioelectronicsjoelngon52@gmail.com
Oks E.M.Tomsk State University of Control Systems and Radioelectronics; Institute of High Current Electronics of SB RASoks@fet.tusur.ru
Всего: 5

References

Месяц Г.А., Проскуровский Д.И. Импульсный электрический разряд в вакууме. - Новосибирск: Наука, 1984. - 256 с.
William T. Diamond. //j. Vac. Sci. Technol. A. - 1998. - V. 16(2).
Крэгс Дж. Электрический пробой в газах: пер. с англ. - М., 1960.
Королев Ю.Д., Месяц Г.А. Физика импульсного пробоя в газах. - М.: Наука, 1991. - 224 с.
Бурдовицин В.А., Бурачевский Ю.А., Мытников А.В., Окс Е.М. // ЖТФ. - 2001. - Т. 71. - Вып. 2. - С. 48-50.
Жирков И.С., Бурдовицин В.А., Окс Е.М. // ЖТФ. - 2007. - Т. 77. - Вып. 9. - С. 115-119.
Бурдовицин В.А., Куземченко М.Н., Окс Е.М. // ЖТФ. - 2002. - Т. 72. - № 7. - С. 134-136.
Karansky V.V., Klimov A.S., Smirnov S.V. // Vacuum. - 2020. - V. 173. - P. 109115.
Yushkov Yu.G., Oks E.M., Tyunkov A.V., Zolotukhin D.B. // Ceram.Int. - 2019. - V. 45. - No. 8. - P. 9782-9787.
Бурдовицин В.А, Жирков И.С., Окс Е.М. и др. // Приборы и техника эксперимента. - 2005. - № 6. - С. 66-68.
Жирков И.С., Бурдовицин В.А., Окс Е.М., Осипов И.В. // ЖТФ. - 2006. - Т. 76. - Вып. 10. - С. 128-131.
Окс Е.М. Источники электронов с плазменным катодом: физика, техника, применения. - Томск: Изд-во НТЛ, 2005. - 216 с.
Galansky V.L., Gruzdev V.A., Osipov I.V., Rempe N.G. //j. Phys. D: Appl. Phys. - 1994. - V. 27. - No. 5. - P. 953-961.
 Influence of the gas type on the electrical strength of the accelerating pro-gap of the fore-vacuum plasma source of electrons | Izvestiya vuzov. Fizika. 2022. № 11. DOI: 10.17223/00213411/65/11/26

Influence of the gas type on the electrical strength of the accelerating pro-gap of the fore-vacuum plasma source of electrons | Izvestiya vuzov. Fizika. 2022. № 11. DOI: 10.17223/00213411/65/11/26