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[2] Song J H, Miao L#, Xu A G#, et al. Plasma kinetics: Anomalous transport process in a hollow cathode plume [J]. Physics of Fluids, 2026, 38: 014104.
[3] Miao L, Jia J T, Tian F#, et al. Experimental insights into discharge instability and energetic ion dynamics in ampere-level hollow cathodes [J]. Plasma Sources Science and Technology, 2025, 34:105008.
[4] Miao L#, Yang T X, et al. Status analysis on sputtering and erosion evaluation methods of ion optic systems [J]. Chinese Journal of Aeronautics, 2025, 38: 103185.
[5] Song J H, Miao L#, Xu A G#, et al. Discrete Boltzmann modeling of Kelvin-Helmholtz instability in plasma [J]. Physics of Fluids, 2025, 37: 036137.
[6] Song J H, Miao L#, Xu A G#, et al. Rarefaction effect on non-equilibrium characteristics of laminar shock wave/boundary layer interaction [J]. Chinese Journal of Aeronautics, 2025, 38(10): 103538.
[7] Zhu Z X, Miao L#, Li Y G, et al. Numerical simulation of sputtering yield of 3D rough ion optic materials [J]. Nuclear Inst. and Methods in Physics Research, B. 2025, 569: 165905.
[8] Song J H, Xu A G#, Miao L#, et al. Plasma kinetics: Discrete Boltzmann modeling and Richtmyer-Meshkov instability [J]. Physics of Fluids, 2024, 36: 016107.
[9] Tian F, Miao L#, et al. A global model for evaluating discharge characteristics and performance of hollow cathodes [J]. Chinese Journal of Aeronautics, 2024, 37: 72-84.
[10] Liang Fuwen, Miao Long*, et al. The effects of deployment friction on the dynamics of nonconductive space tethers. Acta Astronautica, 2024. 214: 567-582.
[11] Tian Feng, Miao Long#, et al. Analysis of Effect of Ground Experiment Environment on Plasma Contactor Performance. AIAA Journal, 2023, 61(3): 1168-1180.
[12] He Zihao, Miao Long#, et al. Analysis of experimental methods for measuring the sputtering yield of ion thruster grid material. AIAA Journal, 2023, 61(7): 2799-2809.
[13] Tian Feng, Miao Long#, et al. Analysis of the effect of keeper working conditions on hollow cathode performance. Acta Astronautica, 2023, 211: 130-141.
[14] He Zihao, Miao Long#, et al. Differential sputtering yield measurement of ion grid materials by novel arch array system. Acta Astronautica, 2023, 213: 446-454.
[15] Miao Long#, Nie Mingqing, et al. Influence of vacuoles with gas-liquid inclusions on the thermobaric destruction conditions of natural quartz under dynamic heating in an RF-TICP torch system. Plasma Science and Technology, 2023, 25(4): 1-10.
[16] Tian Feng, Xie Kan#, Miao Long#, et al. An equivalent model of discharge instability in the discharge chamber of Kaufman ion thruster. Plasma Science and Technology, 2022, 24: 1-9.
[17] Liang Fuwen, Xie Kan, Miao Long#, et al. Effects of tether dimensions and seasonal variations on the performance of bare electrodynamic tethers. Thermal Science and Engineering Progress, 2022, 30: 1-10.
[18] Miao Long#, Grishin Yuri Mihailovich. Gas dynamic-thermal-concentration fields and evaporation process of quartz particles in Ar–H2 inductively coupled plasma. Plasma Sources Science and Technology, 2020, 29(6): 065006-065018.
[19] Miao Long#, Grishin Yuri Mihailovich. Studies of vortex characteristics and gas-dynamic fields in Ar-H2 inductively coupled plasma. International Journal of Heat and Mass Transfer, 2019, 144: No.118671.
[20] Miao Long#, Grishin Yuri Mihailovich. Numerical investigation into the characteristics of a vortex in an argon inductively coupled plasma. Plasma Sources Science and Technology, 2018, 27(11): 115008-115018.
[21] 苗龙,杨统勋,白松#. 离子推力器栅极束流引出特性仿真研究.宇航学报. 2026, 47(6):1617-1627.
[22] 朱政羲,苗龙#,耿海. 离子发动机栅极材料差分溅射产额分布特性仿真. 航天器环境工程. 2024, 41(04): 450-458.
[23] 宋家辉,许爱国,苗龙#. 激波/平板层流边界层干扰熵增特性. 航空学报. 2023, 44(21): 276-293.
[24] 贾金涛,苗龙#. 空心阴极羽流等离子体放电特性实验研究进展. 气体物理. 2025, 10 (01): 15-26.
[25] 苗龙#,陆昶,白松. 微真空电弧推力器阴极斑点烧蚀特性数值计算研究. 推进技术. 2024, 45(12): 287-295.
[26] 苗龙#, 聂明卿, 白松. 大气压射频感应等离子体热流场及涡流形态数值计算研究. 中国科学: 技术科学, 2022: 1-19.
[27] 田丰, 苗龙#, 梁福文. 空心阴极羽流等离子体放电不稳定性二维仿真模型. 兵工学报, 2023: 1-12.