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基于朗缪尔探针诊断的螺旋波等离子体源放电实验研究

段朋振 苏晓璐 谢平 李益文

空军工程大学学报2026,Vol.27Issue(2):27-34,8.
空军工程大学学报2026,Vol.27Issue(2):27-34,8.DOI:10.3969/j.issn.2097-1915.2026.02.004

基于朗缪尔探针诊断的螺旋波等离子体源放电实验研究

A Study of Helicon Wave Plasma Source Discharge Based on Langmuir Probe Diagnostics

段朋振 1苏晓璐 1谢平 1李益文2

作者信息

  • 1. 空军工程大学航空机务士官学校,河南信阳,464000
  • 2. 空军工程大学航空动力系统与等离子体技术全国重点实验室,西安,710038
  • 折叠

摘要

Abstract

Aimed at the problems that discharge mechanisms are complex and discharge characteristics of helicon wave plasma sources are unclear,this paper systematically investigates the discharge characteristics of working gases such as argon,helium,and nitrogen,as well as the effects of magnetic field strength,RF power,and gas pressure on argon discharge properties by the RF-compensated Langmuir probe diagnostic method.The experimental results indicate that argon exhibits optimal performance in terms of discharge intensity and ion density,making it more suitable for electric propulsion systems.A magnetic field is neces-sary for the transition from inductive discharge to wave-coupled mode.Under condition of specific parame-ters(0.40 Pa,200 G),there undergoes a H-W mode transition 600 W around in the process of argon dis-charge,with ion density reaching the order of 1018 m-3 in the wave mode.Although appropriately increas-ing the discharge gas pressure can enhance power coupling efficiency and discharge intensity,yet when the pressure exceeds a certain level,the increase in ion density slows down or even saturates.The conclusions demonstrate that the mode transition in helicon discharge is closely related to external parameters,and this study provides experimental evidence for elucidating its physical mechanisms and propulsion applications.

关键词

螺旋波/等离子体放电/朗缪尔探针诊断/氩气

Key words

helicon wave/plasma discharge/langmuir probe diagnosis/argon

分类

航空航天

引用本文复制引用

段朋振,苏晓璐,谢平,李益文..基于朗缪尔探针诊断的螺旋波等离子体源放电实验研究[J].空军工程大学学报,2026,27(2):27-34,8.

基金项目

陕西省科技创新团队基金(2023-CX-TD-22) (2023-CX-TD-22)

全国重点实验室基金(6142202210307) (6142202210307)

空军工程大学学报

2097-1915

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