DocumentCode
2902075
Title
Investigation of discharge parameters in Xenon filled coaxial DBD tube
Author
Pal, U.N. ; Gulati, P. ; Kumar, Narendra ; Kumar, Niraj ; Tyagi, M.S. ; Meena, B.L. ; Sharma, Arvind Kumar ; Prakash, Ram
Author_Institution
Central Electron. Eng. Res. Inst. (CEERI), Pilani, India
fYear
2011
fDate
21-24 Feb. 2011
Firstpage
225
Lastpage
226
Abstract
In this paper a Xenon filled coaxial dielectric barrier discharge (DBD) has been studied to understand the high pressure, non-equilibrium, nonthermal plasma discharge. A quartz coaxial DBD tube (ID: 6mm, OD: 12 mm) at 400 mbar Xenon filled pressure has been used in the experiment. Different applied voltage waveforms at 30 kHz using RF generator as well as pulse power source have been applied to the discharge electrodes for the generation of microdischarges. Visual images of discharge and electrical waveform confirm the diffused type discharges. The knowledge obtained by dynamic processes of DBDs in the discharge gap explains quantitatively the mechanism that is obtained in ignition, development and extinction of DBDs. The behaviour of different discharge parameters has also been analyzed. From the experimental results and equivalent electrical circuit, the dynamic nature of equivalent capacitance has been reported. The relative intensity analysis of the second continuum of the Xe discharge (172 nm) has been carried out for different applied voltages and it is found that the radiation power has increased with voltage.
Keywords
capacitance; discharge lamps; discharges (electric); equivalent circuits; gas-discharge tubes; plasma materials processing; waveform generators; xenon; RF generator; Xenon filled coaxial DBD tube; Xenon filled coaxial dielectric barrier discharge; different discharge parameters; diffused type discharges; discharge electrodes; discharge gap; dynamic processes; electrical waveform; equivalent capacitance; equivalent electrical circuit; microdischarges; nonthermal plasma discharge; pulse power source; quartz coaxial DBD tube; radiation power; relative intensity analysis; visual images; voltage waveforms; Dielectrics; Discharges; Electron tubes; Fault location; Plasmas; Xenon; Higher pressure plasma; dielectric barrier discharge; equivalent capacitance; ignition and extinction of discharge; nonequilibrium discharge; nonthermal discharge;
fLanguage
English
Publisher
ieee
Conference_Titel
Vacuum Electronics Conference (IVEC), 2011 IEEE International
Conference_Location
Bangalore
Print_ISBN
978-1-4244-8662-5
Type
conf
DOI
10.1109/IVEC.2011.5746957
Filename
5746957
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