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    • 10. 发明授权
    • Particle detector spatial resolution
    • 粒子探测器空间分辨率
    • US5171996A
    • 1992-12-15
    • US738529
    • 1991-07-31
    • Victor Perez-Mendez
    • Victor Perez-Mendez
    • G01T1/20G21K4/00H01J29/38
    • G01T1/2006G21K4/00H01J29/385G21K2004/06
    • Method and apparatus for producing separated columns of scintillation layer material, for use in detection of X-rays and high energy charged particles with improved spatial resolution. A pattern of ridges or projections is formed on one surface of a substrate layer or in a thin polyimide layer, and the scintillation layer is grown at controlled temperature and growth rate on the ridge-containing material. The scintillation material preferentially forms cylinders or columns, separated by gaps conforming to the pattern of ridges, and these columns direct most of the light produced in the scintillation layer along individual columns for subsequent detection in a photodiode layer. The gaps may be filled with a light-absorbing material to further enhance the spatial resolution of the particle detector.
    • 用于产生分离的闪烁层材料列的方法和装置,用于检测具有改进的空间分辨率的X射线和高能带电粒子。 在基板层或薄聚酰亚胺层的一个表面上形成隆起或凸起的图案,并且在含垄材料的控制温度和生长速率下生长闪烁层。 闪烁材料优选地形成圆柱体或柱,由与脊图案相符的间隙分开,并且这些色谱柱将沿着各个列的闪烁层中产生的大部分光引导在光电二极管层中进行随后的检测。 可以用光吸收材料填充间隙,以进一步增强颗粒检测器的空间分辨率。