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Pulsed microwave-driven argon plasma jet with distinctive plume patterns resonantly excited by surface plasmon polaritons
Authors:Chen Zhao-Quan  Yin Zhi-Xiang  Xia Guang-Qing  Hong Ling-Li  Hu Ye-Lin  Liu Ming-Hai  Hu Xi-Wei  A. A. Kudryavtsev
Affiliation:a College of Electrical & Information Engineering, Anhui University of Science and Technology, Huainan 232001, China;b Faculty of Physics, St. Petersburg State University, St. Petersburg, 198504, Russia;c State Key Laboratory of Structural Analysis for Industrial Equipment, Dalian University of Technology, Dalian 116024, China;d State Key Laboratory of Advanced Electromagnetic Engineering and Technology, Huazhong University of Science and Technology, Wuhan 430074, China
Abstract:Atmospheric lower-power pulsed microwave argon cold plasma jets are obtained by using coaxial transmission line resonators in ambient air.The plasma jet plumes are generated at the end of a metal wire placed in the middle of the dielectric tubes.The electromagnetic model analyses and simulation results suggest that the discharges are excited resonantly by the enhanced electric field of surface plasmon polaritons.Moreover,for conquering the defect of atmospheric argon filamentation discharges excited by 2.45-GHz of continued microwave,the distinctive patterns of the plasma jet plumes can be maintained by applying different gas flow rates of argon gas,frequencies of pulsed modulator,duty cycles of pulsed microwave,peak values of input microwave power,and even by using different materials of dielectric tubes.In addition,the emission spectrum,the plume temperature,and other plasma parameters are measured,which shows that the proposed pulsed microwave plasma jets can be adjusted for plasma biomedical applications.
Keywords:pulsed microwave discharge  surface plasmon polaritons  atmospheric argon cold plasma jet  distinctive plasma plume patterns
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