Measurement of plasma parameters in a high-current DBD in mixtures of He+Ar, He+Xe

Authors

  • Yu.S. Akishev State Scientific Center of the Russian Federation TRINITY, st. Pushkovykh 12, 142190, Troitsk, Moscow
  • G.I. Aponin State Scientific Center of the Russian Federation TRINITY, st. Pushkovykh 12, 142190, Troitsk, Moscow
  • M.E. Grushin State Scientific Center of the Russian Federation TRINITY, st. Pushkovykh 12, 142190, Troitsk, Moscow
  • V.B. Karalnik State Scientific Center of the Russian Federation TRINITY, st. Pushkovykh 12, 142190, Troitsk, Moscow
  • I.V. Kochetov State Scientific Center of the Russian Federation TRINITY, st. Pushkovykh 12, 142190, Troitsk, Moscow
  • A.V. Petryakov State Scientific Center of the Russian Federation TRINITY, st. Pushkovykh 12, 142190, Troitsk, Moscow
  • N.I. Trushkin State Scientific Center of the Russian Federation TRINITY, st. Pushkovykh 12, 142190, Troitsk, Moscow

DOI:

https://doi.org/10.18321/

Keywords:

plasma, discharge, inert gas, pulse, barrier

Abstract

The results of experimental studies of the combined barrier discharge (CBD) in the mixtures of inert gases are presented in this paper. The high-current regime of CBD was induced by superposition of a high-voltage pulse with a short leading edge on the stationary sinusoidal dielectric barrier discharge. It is shown that the superposition of high-voltage pulse in a certain phase of the sinusoidal voltage can increase the density of the discharge plasma up to ne=1013 cm-3.

References

(1). Paris S., Aints M., Laan M., Valk F. // J. Phys. D: Appl. Phys. 2004. Vol. 37. P. 1179.

(2). Ivkovic S., Stefenovic G., Obradovic B., Cvetanovic N., Kuraica M.J. // J. Phys. D: Appl. Phys. 2014. Vol. 47. 055204 (10 pp).

(3). Laux C., Spence T., Kruger C., Zare R. // Plasma Sources Sci. Technol. 2003. Vol. 12. P. 125.

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Published

2014-12-25

How to Cite

Akishev, Y., Aponin, G., Grushin, M., Karalnik, V., Kochetov, I., Petryakov, A., & Trushkin, N. (2014). Measurement of plasma parameters in a high-current DBD in mixtures of He+Ar, He+Xe. Combustion and Plasma Chemistry, 12(4), 235-243. https://doi.org/10.18321/