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Floating zone growth and scintillation characteristics of cerium-doped gadolinium pyrosilicate single crystals

机译:掺铈焦pyr硅酸盐单晶的漂浮区生长和闪烁特性

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Growth of cerium-doped gadolinium pyrosilicate (Gd2Si2O7:Ce) single crystals, which show 2.5 times greater light output for gamma-rays and five times greater light output for alpha particles than GSO single crystals, is accomplished using floating zone growth method (FZ method). Although growth of Gd2Si2O7 (GPS) single crystal is considered to be difficult because it melts incongruently according to the phase diagram in a Gd2O3-SiO2 system, we attempted crystal growth of Ce:GPS because the possibility exists that heavy Ce doping changes the phase diagram. Transparent single crystals were obtained, but cracks were observed in the crystals. The crystal structure was triclinic with space group P/1 and density of 5.5 g/cm3. Two peaks were observed by photoluminescence spectrum measurement at 374 nm and 394 nm caused by 5d-4f transition in Ce3+ ion. Decay times of Ce:GPS were 46 ns for gamma-ray and 39 ns for alpha particles; its density was 5.5 g/cm3. We consider that the energy resolution of 23% will be improved by fabrication of large crystals and improvement of crystal perfectability.
机译:铈掺杂焦硅酸((Gd 2 Si 2 O 7 :Ce)单晶的生长,其伽马光输出高出2.5倍使用浮区生长方法(FZ方法)可实现α射线的X射线和比GSO单晶体大五倍的光输出。虽然认为Gd 2 Si 2 O 7 (GPS)的生长很困难,因为根据相图中的不均匀熔化,在一个Gd 2 O 3 -SiO 2 系统中,我们尝试了Ce:GPS的晶体生长,因为存在重Ce掺杂改变相的可能性图表。获得透明的单晶,但是在晶体中观察到裂纹。晶体结构为三斜晶,空间群为P / 1 ,密度为5.5 g / cm 3 。 Ce 3 + 离子的5d-4f跃迁在374 nm和394 nm处通过光致发光光谱测量观察到两个峰。 Ce:GPS的衰减时间对于γ射线是46 ns,对于α粒子是39 ns。密度为5.5 g / cm 3 。我们认为,通过制造大晶体和改善晶体的完善性,可以提高23%的能量分辨率。

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