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有限元模拟对CdZnTe共面栅探测器的优化设计
引用本文:郁芳,桑文斌,李万万,滕建勇.有限元模拟对CdZnTe共面栅探测器的优化设计[J].功能材料与器件学报,2003,9(1):61-66.
作者姓名:郁芳  桑文斌  李万万  滕建勇
作者单位:上海大学,材料科学与工程学院,电子信息材料系,上海,201800
基金项目:国家自然科学基金资助项目(No.10175040)
摘    要:利用有限元分析软件ANSYS,通过变化栅宽、沟宽及栅极位置等因素,模拟了共面栅探测器在不同的电极设计时的电势分布,并讨论了电极分布不对称时所产生的边缘对感应信号的影响,显示了具有优化设计的共面栅电极,可以进一步提高探测器的能量分辩率。

关 键 词:CdZnTe  共面栅探测器  有限元分析
文章编号:1007-4252(2003)01-0061-06
修稿时间:2002年7月25日

Electrode design of coplanar- grid detector by finite elements method
YU Fang,SANG Wen-bin,LI Wan-wan,TENG Jian-yong.Electrode design of coplanar- grid detector by finite elements method[J].Journal of Functional Materials and Devices,2003,9(1):61-66.
Authors:YU Fang  SANG Wen-bin  LI Wan-wan  TENG Jian-yong
Abstract:Coplanar-grid detectors, which have been developed recently, can effectively overcomethe problem of poor hole collection in detectors. Thus the energy resolution of gamma ray can be greatly improved. Finite elements analysis is utilized for simulating the potential distribution of the coplanar-grid detector under different electrode models by varying the widths of grid, gap and theposition of electrodes. In addition, the influence of edge effects resulting from the unsymmetricalelectrodes on induced charge is discussed. In this way, the geometry of electrodes for coplanar-grid detectors is optimized and thus the energy resolution of detectors could be further improved.
Keywords:coplanar-grid detector  CdZnTe  finite element analysis (FEA)  
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