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...
【英文摘要】
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...
【基金】
supported by the National Natural Science Foundation of China(Grant Nos.11105002 and 61170172);
the Natural Science Foundation of Anhui Province,China(Grant Nos.1408085QA16 and 1408085ME101);
the China Postdoctoral Science Foundation(Grant No.2014M551788);
the Open-end Fund of State Key Laboratory of Advanced Electromagnetic Engineering and Technology(HUST),China(Grant No.GZ1301)
【更新日期】
2015-04-08
【分类号】
O53
【正文快照】
1.Introduction CTLR jets reported by Lee et which are more suitableAlthough there are many types of atmospheric-pressure for localized three-dimensional plasma treatments.While theplasma sources,low-power microwave-driven atmospheric linear geometry plasm