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Generation of a magnetic-field enhanced diffuse plume in an atmospheric pressure argon plasma jet

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【作者】 李金懋姜钧泽李雪辰孙换霞苏彤杨晨曦张雪雪陈俊宇冉俊霞庞学霞贾鹏英姜源涛

【Author】 Jinmao LI;Junze JIANG;Xuechen LI;Huanxia SUN;Tong SU;Chenxi YANG;Xuexue ZHANG;Junyu CHEN;Junxia RAN;Xuexia PANG;Pengying JIA;Yuantao JIANG;College of Physics Science and Technology,Hebei University;Department of Electrical and Information Engineering,Heilongjiang University of Technology;Engineering Research Center of Zero-carbon Energy Buildings and Measurement Techniques,Ministry of Education;Hebei Key Laboratory of Photo-Electricity Information and Materials,Hebei University;Affiliated Hospital of Hebei University,Hebei University;

【通讯作者】 姜源涛;

【机构】 College of Physics Science and Technology,Hebei UniversityDepartment of Electrical and Information Engineering,Heilongjiang University of TechnologyEngineering Research Center of Zero-carbon Energy Buildings and Measurement Techniques,Ministry of EducationHebei Key Laboratory of Photo-Electricity Information and Materials,Hebei UniversityAffiliated Hospital of Hebei University,Hebei University

【摘要】 Atmospheric pressure plasma jet(APPJ) has the ability to emanate a kind of low-temperature plasma plume suitable for material surface modification, particularly for three-dimensional objects.While helium-fed APPJ can readily produce a diffuse plume ideal for uniform treatment, argonfed APPJ typically forms a filamentary plume that causes localized surface effects and potential damages. Achieving a stable, enhanced diffuse plume in argon APPJ remains challenging. This work demonstrates the realization of a diffuse argon plume using a pulsed APPJ enhanced by an axial magnetic field. The magnetic field(0–470 mT) confines the radial diffusion of electrons via Lorentz force, extending streamer propagation distance and promoting reactive species production. Diagnostics confirm significant improvements in plume length, emission intensity,streamer propagation distance, and reactive species density for the diffuse argon plume.

【Abstract】 Atmospheric pressure plasma jet(APPJ) has the ability to emanate a kind of low-temperature plasma plume suitable for material surface modification, particularly for three-dimensional objects.While helium-fed APPJ can readily produce a diffuse plume ideal for uniform treatment, argonfed APPJ typically forms a filamentary plume that causes localized surface effects and potential damages. Achieving a stable, enhanced diffuse plume in argon APPJ remains challenging. This work demonstrates the realization of a diffuse argon plume using a pulsed APPJ enhanced by an axial magnetic field. The magnetic field(0–470 mT) confines the radial diffusion of electrons via Lorentz force, extending streamer propagation distance and promoting reactive species production. Diagnostics confirm significant improvements in plume length, emission intensity,streamer propagation distance, and reactive species density for the diffuse argon plume.

【基金】 sponsored by National Natural Science Foundation of China (Nos. 12375250, 51977057 and 11875121);the Hebei Natural Science Foundation (Nos. A2020201025, A2022201036 and A2023201012);Hebei Province Optoelectronic Information Materials Laboratory Performance Subsidy Fund Project (No. 22567634H);the Natural Science Foundation of Heilongjiang Province (No. LH2022F050);the Special Foundation Project of Fundamental Scientific Research Professional Expenses for Undergraduate Universities in Heilongjiang Province (No. 2024-KYYWF1277)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2026年04期
  • 【分类号】O53
  • 【下载频次】1
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