DocumentCode :
1256650
Title :
PIC/MCC Simulation of the Ionization Process for Filamentary Streamer Plasma Jet at Atmosphere Pressure in Argon
Author :
Chen, Zhaoquan ; Liu, Minghai ; Xia, Guangqing ; Huang, Yourui
Author_Institution :
Coll. of Electr. & Inf. Eng., Anhui Univ. of Sci. & Technol., Huainan, China
Volume :
40
Issue :
11
fYear :
2012
Firstpage :
2861
Lastpage :
2865
Abstract :
Recently, we have reported a microwave plasma jet at atmosphere in argon, capable of generating filamentary streamer discharges within the entire quartz tube, while several bifurcations yield at the end of the copper wire immediately in the quartz tube when incident power reaches 20 W. However, the ionization process for the discharges is still not very well clarified. This paper shows a numerical study of the proposed plasma jet by means of the 2D3V particle in cell with Monte Carlo collision method. The detailed information about the distributions of plasmas and electromagnetic fields is obtained by sampling the simulated results at different time steps. The simulation results suggest that the production of the proposed plasma jet is attributed to the seed plasmas triggered by the enhanced electric field of surface plasmon polaritons and its interaction with plasmas.
Keywords :
Monte Carlo methods; argon; bifurcation; high-frequency discharges; ionisation; numerical analysis; plasma collision processes; plasma electromagnetic wave propagation; plasma jets; plasma simulation; 2D3V particle in cell method; Ar; MCC simulation; Monte Carlo collision method; PIC simulation; atmosphere pressure; bifurcations; electric field enhancement; electromagnetic fields; filamentary streamer plasma jet; hlamentary streamer discharges; ionization process; microwave plasma jet; numerical method; plasma distributions; pressure 1 atm; quartz tube; surface plasmon polaritons; Argon; Atmospheric modeling; Discharges (electric); Electron tubes; Plasmas; Surface discharges; Surface waves; Ionization; Monte Carlo collision (MCC); microwave streamer discharges; particle in cell (PIC); surface plasmon polaritons (SPPs);
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2012.2208228
Filename :
6256749
Link To Document :
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