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等离子体特性实验等相关领域研究,电子、等离子体与材料的相互作用,电子与气体分子散射、电子发射模拟方法等领域的研究工作

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[1]Xiao-Chuan Hu, Jian Xiao, Wei Zhu, Ya-Xin Yu, 2018. Secondary electron yield of Cu (1 1 0) with adsorbed nitrogen: a 3D Monte Carlo simulation, Journal of Physics D: Applied Physics 51, 385203. [2]Xiao-Chuan Hu, Meng Cao, Wan-Zhao Cui, 2016. Influence of surface topography on the secondary electron yield of clean copper samples. Micron 90, 71–77. [3]Xiao-Chuan Hu, Hai-Bo Zhang, Meng Cao, Na Zhang, Wan-Zhao Cui, 2014. Heating-induced variations of secondary electron emission from ion-cleaned copper samples. Micron 64, 52–56. [4]Hai-Bo Zhang, Xiao-Chuan Hu, Meng Cao, Na Zhang, Wan-Zhao Cui, 2014. The quantitative effect of thermal treatment on the secondary electron yield from air-exposed silver surface. Vacuum 102, 12–15. [5]Hai-Bo Zhang, Xiao-Chuan Hu, Rui Wang, Meng Cao, Na Zhang, Wan-Zhao Cui, 2012. Note: Measuring effects of Ar-ion cleaning on the secondary electron yield of copper due to electron impact. Review of Scientific Instruments 83, 066105. [6]Wei Zhu, Jie Li, Lin Zhang, Xiao-Chuan Hu, 2016, A reversible bipolar WORM device based on AlOxNy thin film with Al nano phase embedded. Solid-State Electronics 129,134-137.

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