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Impact of impurities Cs+, Mg2+, Fe2+, and Sn2+ on scintillation performance of SrI2(Eu)

机译:杂质Cs +,Mg2 +,Fe2 +和Sn2 +对SrI2(Eu)闪烁性能的影响

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In this study, the impact of impurities on the scintillation performance of SrI(Eu) was characterized along with their segregation behavior. Single crystals of SrI codoped with 4% Eu and 0.2% X = {Cs, Mg, Fe, Sn} were grown by the vertical Bridgman-Stockbarger method from the melt. Pulse-height gamma ray spectroscopy measurements demonstrated that samples codoped with Cs, Mg, and Fe were slightly degraded in light yield and energy resolution. No significant impact on the decay time and emission peak centroid, 1.5 μs and 428 nm, respectively, were observed. However, the Sn-codoped sample possessed only 55% of the light yield and only half the resolution of SrI(Eu). In addition to its Eu 5d-4f emission at 428 nm, a broader emission above 550 nm was observed in this sample, accompanied by a shorter decay time of 1.1 μs. Moreover, Sn did not segregate as well as Cs, Mg, and Fe, and thus cannot be removed as easily during growth or zone refining purification. Finally, the results of this study will aid in developing a better understanding of how codoping influences light output.
机译:在这项研究中,对杂质对SrI(Eu)闪烁性能的影响及其分离行为进行了表征。通过垂直Bridgman-Stockbarger方法从熔体中生长出共掺有4%Eu和0.2%X = {Cs,Mg,Fe,Sn}的SrI单晶。脉冲高度伽马射线能谱测量表明,掺有Cs,Mg和Fe的样品的光产率和能量分辨率略有下降。分别对衰减时间和发射峰质心1.5μs和428 nm没有显着影响。但是,Sn掺杂的样品仅具有55%的光产率,并且只有SrI(Eu)分辨率的一半。除了在428 nm处发射Eu 5d-4f之外,在此样品中还观察到550 nm以上的更宽发射,并伴有更短的1.1μs衰减时间。此外,Sn不能像Cs,Mg和Fe一样偏析,因此在生长或区域精炼纯化过程中不能轻易除去。最后,这项研究的结果将有助于加深对共掺杂如何影响光输出的理解。

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