[1] 陈德智, 李冬, 刘开锋, 等. 用于中性束注入的大功率
射频离子源激励器研制 [J]. 核聚变与等离子体物理,
2015(4): 334.
[2] Guittienne P, Chevalier E, HollensteinC. Towards an
optimal antenna for helicon waves excitation [J]. J. Appl.
Phys., 2005, 98(8): 1147.
[3] Pandey A, Mukhopadhyay D, Borah D, et al.
Characterization of hydrogen plasma in a permanent ring
magnet based helicon plasma source for negative ion
source research [J]. Plasma Phys. Contr. F., 2019, 61(6):
284.
[4] Thompson D S, Agnello R, Furno I, et al. Ion heating and
flows in a high power helicon source [J]. Phys. Plasmas,
2017, 24(6): 1147.
[5] Zhang T, Jiang K, Liu Z, et al. Characteristics of ICP and
helicon plasma in a single loop antenna [J]. Plasma
Science and Technology, 2020, 22(8): 085405.
[6] 王弼. 7.0T 磁共振动物成像仪正交鸟笼线圈的研制
[D]. 厦门: 厦门大学, 2017.
[7] 陈思明, 张雪雷. 9.4T 磁共振成像系统高通鸟笼射频
线圈的研制 [J]. 电子技术应用, 2017, 43(7): 16.
[8] Guittienne P. Resonant planar antenna as an inductive
plasma source [J]. J. Appl. Phys., 2012, 111(8): 1.
[9] 徐永锋. 超高场磁共振成像射频线圈技术及实时监控
系统的研究 [D]. 合肥: 中国科学技术大学, 2017.
[10] 张巍巍. 基于 1.5T 磁共振系统体线圈电磁参数分析及
共振频率算法实现 [D]. 成都: 西南交通大学, 2016.
[11] 陈国华, 石科军, 储进科, 等. 环形磁场金属等离子体
源冷却流场的数值模拟与优化 [J]. 物理学报, 2021,
70(7): 8.
[12] 向石涛. 射频放电等离子体的探针诊断研究 [D]. 合肥: 中国科学技术大学, 2015.
[13] 李京勇, 刘智民, 谢亚红, 等. 射频离子源朗缪尔双探
针设计 [J]. 真空科学与技术学报, 2017, 37(5): 484.
[14] 邵明绪. 低频放电等离子体静电探针诊断方法 [D].
西安: 西安电子科技大学, 2014.
[15] Zhao Gao, ZhuWanying, Wang Huihui, et al. Study of
axial double layer in helicon plasma by optical emission
spectroscopy and simple probe [J]. Plasma Science and
Technology, 2018, 20(7): 075402.
[16] Celik M. Spectral measurements of inductively coupled
and helicon discharge modes of a laboratory argon
plasma source [J]. Spectrochimica Acta Part B Atomic
Spectroscopy, 2011, 66(2): 149.
[17] Fazelpour S, Chakhmachi A, D Iraji, et al. Design of a
novel high efficiency antenna for helicon plasma sources
[J]. J. Plasma Phys., 2018, 84(3): 905840303.
[18] Romano F, Chan Y A, Herdrich G, et al. RF helicon-based
Inductive Plasma Thruster (IPT) design for an
Atmosphere-Breathing Electric Propulsion system
(ABEP) [J]. Acta Astronautica, 2020, 176C: 476.
[19] Marini C, Agnello R, Duval B P, et al. Spectroscopic
characterization of H_2 and D_2 helicon plasmas
generated by a resonant antenna for neutral beam
applications in fusion [J]. Nucl. fusion, 2017, 57(3):
036024.
[20] Fantz, U. Basics of plasma spectroscopy [J]. Plasma
Sources Science & Technology, 2006, 15(4): S137.
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