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pro vyhledávání: '"Liu Ming-Hai"'
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Akademický článek
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Publikováno v:
High Power Laser and Particle Beams. 24:2245-2249
In this paper, a strip air-core pulse transformer is designed to convert the current. And, how it works and the process of making iselaborated in detail. The transformer contains leads, insulator, copper strip and supporting core. Under the condition
Publikováno v:
Plasma Science and Technology. 12:129-133
A three-dimensional fluid model for surface-wave plasma (SWP), to investigate the discharge characteristics of a rectangular SWP source working in a steady state, was presented. The simulation is performed for different gas pressures in argon and dif
Publikováno v:
High Power Laser and Particle Beams. 22:1909-1913
Autor:
Chen Wei, Hu Xiwei, Yan Bao-Rong, Chen Zhao-Quan, Lü Jian-Hong, Tang Liang, Liu Ming-Hai, Lan Chao-Hui, Luo Zhi-Qing
Publikováno v:
Chinese Physics B. 18:3484-3489
The principle of surface wave plasma discharge in a rectangular cavity is introduced simply based on surface plasmon polariton theory. The distribution of surface-wave electric field at the interface of the plasma-dielectric slab is investigated by u
Publikováno v:
Chinese Physics B. 18:2412-2419
A self-consistent and three-dimensional (3D) model of argon discharge in a large-scale rectangular surface-wave plasma (SWP) source is presented in this paper, which is based on the finite-difference time-domain (FDTD) approximation to Maxwell's equa
Publikováno v:
Plasma Science and Technology. 11:66-70
A three-dimensional model of a surface-wave plasma (SWP) source is built numerically using the finite-difference time-domain (FDTD) method to investigate the structure of the surface wave propagation along the plasma-dielectric interface and the dist
Publikováno v:
Plasma Science and Technology. 10:655-660
The principle of surface wave plasma discharge in a rectangular cavity is introduced and the distribution of the electromagnetic field within a rectangular waveguide is analysed. A novel structure of a slot antenna array is presented. In comparison w
Publikováno v:
Plasma Science and Technology. 10:180-184
The propagating behaviours, i.e. phase shift, transmissivity, reflectivity and absorptivity, of an electromagnetic (EM) wave in a two-dimensional atmospheric pressure plasma layer are described by the numerical solutions of integral-differential Maxw