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Scintielectronic detector with improved energy resolution approaching the ideal limit

机译:ScintieLeartRonic检测器具有改进的能量分辨率接近理想的极限

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Development prospects are considered for a detector of scintillator-photodiode (SPD) type with improved energy resolution approaching the values of R= 1-2 %. Theoretical analysis has been carried out for principal contributions affecting the total resolution of a detector, with their theoretical and physical limits determined. New ways are proposed to optimize the statistical contribution of the detector and the intrinsic scintillator resolution. A special role of the intrinsic resolution is outlined as the determining factor for spectrometric possibilities of detector with improved resolution. It is noted that improvement of the SPD resolution is determined by the following factors: high conversion efficiency of the scintillator (up to 20-30. %); preparation of highly uniform transparent scintillators of high atomic number and intrinsic luminescence (like CWO, PWO); optimum spectral-optical matching of components of the SPD pair (≤red≥) scintillators like ZnSe(Te) are required); stochastic character of light beam mixing in nonstandard (no cylindrical or rectangular) geometry. Analysis is carried out for three main ranges of ionized radiations detected by SPD system (low -keV, middle MeV, and high -GeV energies).
机译:开发前景被考虑用于闪烁体 - 光电二极管(SPD)类型的探测器,具有改进的能量分辨率接近r = 1-2%的值。为影响探测器总分辨率的主要贡献进行了理论分析,其理论和物理限制确定。建议采用新的方式优化探测器和内在闪烁体分辨率的统计贡献。内在分辨率的特殊作用是概述了检测器的光谱可能性,具有改进的分辨率的决定因素。应注意,通过以下因素确定SPD分辨率的改进:闪烁体的高转化效率(高达20-30%);制备高原子数和内在发光的高度均匀透明闪烁体(如CWO,PWO);需要最佳的光谱 - 光学匹配SPD对(≤Red≥)闪烁体如ZnSe(TE)的闪烁体);非标准(无圆柱形或矩形)几何中光束混合的随机特征。通过SPD系统(低-KeV,中MEV和高电源)检测到的三个电离辐射的主要范围分析。

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