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近贴型像增强器中微通道板输入端电场模拟研究;《红外与激光工程》 2015年10期 加入收藏 投稿

Simulation research of electrostatic field of MCP input in proximity image intensifier;

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sd614713: 金币+5 2016-05-16 09:25:11
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Accession number:       
20154701593549
        Title:        Simulation research of electrostatic field of MCP input in proximity image intensifier
        Authors:        Song, De1, 2 Email author songde614@163.com; Piao, Xue2; Bai, Xiaofeng1; Liu, Chunyang2
        Author affiliation:        1 Science and Technology on Low-Light-Level Night Vision Laboratory, Xi'an, China
                2 College of Science, Changchun University of Science and Technology, Changchun, China
        Source title:        Hongwai yu Jiguang Gongcheng/Infrared and Laser Engineering
        Abbreviated source title:        Hongwai yu Jiguang Gongcheng Infrared Laser Eng.
        Volume:        44
        Issue:        10
        Issue date:        October 25, 2015
        Publication year:        2015
        Pages:        2981-2986
        Language:        Chinese
        ISSN:        10072276
        Document type:        Journal article (JA)
        Publisher:        Chinese Society of Astronautics
        Abstract:        The electrostatic distributions between Micro-channel plate (MCP) and photocathode will affect the movement locus of photogenerated electrons and the proximity image intensifier's performance. However the distributions of electrostatic fields and equipotential lines were complex due to a lot of micro-channel in the micro channel plate. So this paper simulated the electrostatic distribution of MCP input in proximity focusing low-light-level image intensifiers by the finite element simulation analysis software Ansoft Maxwell 3D. How the electrostatic distribution of MCP input were affected by micro- channel diameter, angle of micro-channel, minimum interspacing between micro-channels walls and flaring-condition of the input end of the channel were analyzed according to the simulation result. Meanwhile, the photogenerated electrons' trajectory and image intensifier's resolution affected by the change of electrostatic distribution were discussed. This study will provide a theory foundation for the fabrication of the high quality MCP. ©, 2015, Editorial Board of Journal of Infrared and Laser Engineering. All right reserved.
        Number of references:        8
        Main heading:        Image storage tubes
        Controlled terms:        Computer software - Electrostatics - Finite element method - Image intensifiers (solid state)
        Uncontrolled terms:        Electrostatic distributions - Equipotential lines - Finite element simulations - Low-light-level image - Micro channel plate - Photogenerated electrons - Proximity focusing - Simulation research
        Classification code:        701.1 Electricity: Basic Concepts and Phenomena - 714.1 Electron Tubes - 714.2 Semiconductor Devices and Integrated Circuits - 723 Computer Software, Data Handling and Applications - 921.6 Numerical Methods
        Database:        Compendex
                Compilation and indexing terms, © 2016 Elsevier Inc.
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