Investigation of electrical and optical properties of dielectric barrier discharge

Authors

  • Y.A. Ussenov Al-Farabi Kazakh National University, NNLOT, al-Farabi 71, 050040 Almaty, Kazakhstan Institute of applied sciences and information technologies, 40 Shashkin ast., Almaty 050040, Kazakhstan
  • T.S. Ramazanov Al-Farabi Kazakh National University, NNLOT, al-Farabi 71, 050040 Almaty, Kazakhstan Institute of applied sciences and information
  • M.T. Gabdullin Al-Farabi Kazakh National University, NNLOT, al-Farabi 71, 050040 Almaty, Kazakhstan Institute of applied sciences and information
  • M.K. Dosbolayev Al-Farabi Kazakh National University, NNLOT, al-Farabi 71, 050040 Almaty, Kazakhstan Institute of applied sciences and information
  • T.T. Daniyarov Al-Farabi Kazakh National University, NNLOT, al-Farabi 71, 050040 Almaty, Kazakhstan Institute of applied sciences and information

DOI:

https://doi.org/10.26577/2409-6121-2015-2-1-9-12

Keywords:

Key words, dielectric barrier discharge, dynamic current-voltage characteristics, plasma spectrum. PACS numbers, 52.80.Tn, 52.25.-b

Abstract

In this paper the results of optical and electrical characteristics of dielectric barrier discharge are presented where used “plane to plane” and “pin to plane” electrode configurations. The dynamic current-voltage characteristics of discharge at different electrode configurations were investigated. The plasma spectrum of air of dielectric barrier discharge was obtained by optical emission spectroscopy method. The results of measurement of the discharge current showed that the barrier discharge generated in the streamer mode, and the used pin electrode reduces the streamer channels and micro discharges. The plasma spectrum of air showed active components and radicals which can be used for treatment of living tissues and materialsю

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Published

2016-10-03

Issue

Section

Plasma Physics and Related Technology

How to Cite

Investigation of electrical and optical properties of dielectric barrier discharge. (2016). Physical Sciences and Technology, 2(1). https://doi.org/10.26577/2409-6121-2015-2-1-9-12