强激光与粒子束2026,Vol.38Issue(7):244-250,7.DOI:10.11884/HPLPB202638.250449
基于潘宁源的氢等离子体全局模型数值模拟分析
Numerical simulation analysis of global model of hydrogen plasma based on Penning source
摘要
Abstract
[Background]Penning ion sources are widely employed in small-scale accelerators owing to their structural simplicity,compact geometry,and low power consumption,yet the quantitative dependence of their discharge characteristics and hydrogen ion species distribution on operating parameters remains insufficiently understood.[Purpose]The present work systematically investigates the influence of operating parameters—working gas pressure,power,and magnetic field strength—on the plasma electron density and on the relative fractions of H+,H+2,and H+3ions.[Methods]Taking the collisional ionization ofH2molecules as the object of investigation,a global physical model of the Penning ion source was established that incorporates the principal electron-impact ionization,dissociation,and ion-molecule reactions occurring in the discharge.The working gas pressure was scanned from 6×10-4 Pa to 8×10-2 Pa,the input power from 1 W to 10 W,and the magnetic field strength from 0.005 T to 1 T,and the predictive reliability of the model was further validated by comparison with PIC/MCC simulations and diagnostic measurements reported in the literature.[Results]At a magnetic field of 0.5 T and an input power of 5 W,as the gas pressure increased from 6×10-4 Pa to 8×10-2 Pa,theH+2fraction decreased from approximately 85%to below 5%,while theH+3fraction rose from about 8%to over 90%,and theH+fraction remained below 7%throughout.At 5 W and 0.1 Pa,increasing the magnetic field from 0.005 T to 1 T raised theH+fraction from approximately 3.5%to about 10.7%,and the calculated trends agreed well with the reference simulations and measurements.[Conclusions]These results indicate that the proposed global model reliably reproduces the variation of plasma electron density and hydrogen ion species fractions with pressure,power,and magnetic field,which provides a useful theoretical reference for the optimization and design of Penning ion sources.关键词
潘宁离子源/全局模型/氢等离子体Key words
Penning ion source/global model/hydrogen plasma分类
数理科学引用本文复制引用
叶龙建,董攀,王韬,李杰,何佳龙,李好春..基于潘宁源的氢等离子体全局模型数值模拟分析[J].强激光与粒子束,2026,38(7):244-250,7.基金项目
中国工程物理研究院院长基金自立项目(YZJJZL2025026) (YZJJZL2025026)