[1] 肖坤祥, 周明贵, 谈效华. 潘宁离子源中电磁场和气压对氢气电离的影响[J]. 真空电子技术,2003(06):36−38+48(in chinese) Xiao K X, Zhou M G, Tan X H. Effect of electromagnetic field and air pressure on hydrogen ionization in penning ion source[J]. Vacuum Electronics Technology,2003(06):36−38+48
[2] 欧阳礼仁, 郑德修. 宽束矩形冷阴极潘宁离子源研究[J]. 真空电子技术,2003(02):59−61(in chinese) Ouyang L R, Zheng D X. Study on wide beam rectangular cold cathode penning ion source[J]. Vacuum electronics technology,2003(02):59−61
[3] 刘伟波, 谷德山, 李明娟, 等. NT50型中子管离子源磁场变化对放电电流的影响[J]. 核技术,2009,32(08):592−595(in chinese) doi: 10.3321/j.issn:0253-3219.2009.08.008 Liu W B, Gu D S, Li M J, et al. Effect of magnetic field variation of ion source in NT50 neutron tube on discharge current[J]. Nuclear Technology,2009,32(08):592−595 doi: 10.3321/j.issn:0253-3219.2009.08.008
[4] 石磊, 钱沐杨, 肖坤祥, 等. 低气压条件下氢气潘宁放电的模拟分析[J]. 物理学报,2013,62(17):347−353(in chinese) Shi L, Qian M Y, Xiao K X, et al. Simulation analysis of hydrogen penning discharge under low pressure[J]. Journal of Physics,2013,62(17):347−353
[5] 石磊, 肖坤祥, 钱沐杨. 带电粒子在微型潘宁离子源中的动力学仿真[C]//中国核学会. 中国核科学技术进展报告(第三卷)——中国核学会2013年学术年会论文集第6册(核物理分卷, 计算物理分卷, 粒子加速器分卷). 中国原子能出版社, 2013:132−137(in chinese) Shi L, Xiao K X, Qian M Y. Dynamic simulation of charged particles in a micro penning ion source[C]. Chinese Nuclear Society. Progress Report on Nuclear Science and Technology in China (Volume 3) - Proceedings of the 2013 Annual Conference of the Chinese Nuclear Society, Volume 6 (Nuclear Physics Sub-volume, Computational Physics Sub-volume, Particle Accelerator Sub-volume) China Atomic Energy Press, 2013:132−137
[6] 黄继鹏, 乔双. 中子管用潘宁离子源氢负离子产生机理及实验研究[J]. 强激光与粒子束,2014,26(02):244−248(in chinese) Huang J P, Qiao S. Production mechanism and experimental study of hydrogen negative ions in penning ion source in neutron tube[J]. Intense Laser and Particle Beams,2014,26(02):244−248
[7] 陈宇航, 龙继东, 刘尔祥, 等. 磁场引起的潘宁离子源阻抗变化研究[J]. 强激光与粒子束,2016,28(04):196−201(in chinese) Chen Y H, Long J D, Liu E X, et al. Study on impedance change of penning ion source induced by magnetic field[J]. Intense Laser and Particle Beams,2016,28(04):196−201
[8] 于子童, 景士伟, 年瑞雪, 等. 小型中子管潘宁离子源磁路模拟设计[J]. 核电子学与探测技术,2019,39(04):410−415(in chinese) Yu Z T, Jing S W, Nian R X, et al. Magnetic circuit simulation design of penning ion source in miniature neutron tube[J]. Nuclear Electronics and Detection Technology,2019,39(04):410−415
[9] 李卓希, 杨洪广. 中子管用潘宁离子源电离特性研究[J]. 电子世界,2019(11):31−32 Li Z X, Yang H G. Study on ionization characteristics of penning ion source in neutron tube[J]. Electronic World,2019(11):31−32(in chinese)
[10] 张景皓, 张轩雄, Christian Wolf, 等. 磁场辅助的小型化潘宁离子源点时燃放电特性研究[J]. 电子科技,2023,36(05):71−79 Zhang J H, Zhang X X, Wolf C, et al. Study on time-discharge electrical characteristics of miniaturized penning ion source with magnetic field assistance[J]. Electronic Science and Technology,2023,36(05):71−79