• Journal of Terahertz Science and Electronic Information Technology
  • Vol. 22, Issue 8, 918 (2024)
LUO Qiuyan1, LIN Kaixuan1, CHEN Jiajie1, WANG Jiaheng1..., DENG Xuan1, LIU Junkai1, YANG Kaizhi1, HUANG Junkun2, WANG Dong1, LIU Jinyuan1, NIU Lihong1 and CAI Houzhi1,*|Show fewer author(s)
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  • 1[in Chinese]
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    DOI: 10.11805/tkyda2022214 Cite this Article
    LUO Qiuyan, LIN Kaixuan, CHEN Jiajie, WANG Jiaheng, DENG Xuan, LIU Junkai, YANG Kaizhi, HUANG Junkun, WANG Dong, LIU Jinyuan, NIU Lihong, CAI Houzhi. Spatial resolution characteristics of magnetic focusing framing tube[J]. Journal of Terahertz Science and Electronic Information Technology , 2024, 22(8): 918 Copy Citation Text show less

    Abstract

    Theoretical and experimental research of the spatial resolution characteristics of magnetic focusing framing tubes with single magnetic lens, double magnetic lenses and triple magnetic lenses are simulated and studied by Monte Carlo method, finite difference method and finite element method. The relationship among the number of short magnetic lenses and the surface curvature of Micro-Channel Plate(MCP), imaging range and rotation angle is studied. The results show that the more the number of short magnetic lenses, the smaller the curvature of the imaging surface, the flatter the image surface. The imaging range increases with the increase of the number of short magnetic lenses; the electron rotation angle at the MCP point decreases with the increase of the number of short magnetic lenses. With triple magnetic lenses, the spatial resolution of the framing tube is 10 lp/mm within the diameter of 36 mm.
    LUO Qiuyan, LIN Kaixuan, CHEN Jiajie, WANG Jiaheng, DENG Xuan, LIU Junkai, YANG Kaizhi, HUANG Junkun, WANG Dong, LIU Jinyuan, NIU Lihong, CAI Houzhi. Spatial resolution characteristics of magnetic focusing framing tube[J]. Journal of Terahertz Science and Electronic Information Technology , 2024, 22(8): 918
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