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Cerium-activated rare-earth orthophosphate and double phosphate scintillators for X- and gamma-ray detection

机译:铈活化稀土正磷酸盐和双磷酸盐闪烁体,用于X射线和γ射线检测

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When activated with an appropriate rare-earth ion (e.g., Ce or Nd), rare-earth orthophosphates of the form REPO_4 (where RE = a rare-earth cation) and alkali rare-earth double phosphates of the form A_3RE(PO_4)_2 (where A = K, Rb, or Cs) are characterized by light yields and decay times that make these materials of interest for radiation-detection applications. Crystals of the compound Rb_3Lu(PO_4)_2 when activated with ~0.1 mol % Ce exhibit a light yield that is ~250% that of BGO with a decay tune on the order of ~40 nsec. The cerium-activated rare-earth orthophosphate LuPO_4:Ce is also characterized by a high light yield and a relatively fast decay time of ~25 nsec. Additionally, the rare-earth orthophosphates are extremely chemically, physically, and thermally durable hosts that recover easily from radiation damage effects. The properties of the rare-earth orthophosphates and double phosphates that pertain to their use as X- and gamma-ray detectors are reviewed. This review includes information related to the use of Nd-doped LuPO_4 as a scintillator with a sufficiently energetic, short-wavelength output (λ = 90 nm) so that it can be used in conjunction with appropriately activated proportional counters. Information is presented on the details of the synthesis, structure, and luminescence properties of lanthanide double phosphates that, when activated with cerium, are efficient scintillators with output wavelengths that are sufficiently long to be well matched to the response of silicon photodiode detectors.
机译:当被适当的稀土离子(例如Ce或Nd)激活时,形式为REPO_4的稀土正磷酸盐(其中RE =稀土阳离子)和形式为A_3RE(PO_4)_2的碱土金属双重磷酸盐(其中A = K,Rb或Cs)的特征在于光的产生量和衰减时间,这使这些材料成为辐射检测应用程序的关注对象。化合物Rb_3Lu(PO_4)_2的晶体在被〜0.1 mol%Ce活化时,其光产率约为BGO的〜250%,衰减速率约为40纳秒。铈活化稀土正磷酸盐LuPO_4:Ce的特征还在于高的光产量和相对较快的约25纳秒的衰减时间。此外,稀土正磷酸盐是化学,物理和耐热性极强的主体,可轻松从辐射损伤效应中恢复。审查了稀土正磷酸盐和双磷酸盐的性质,这些性质与它们用作X射线和γ射线探测器有关。这篇综述包括与使用Nd掺杂的LuPO_4作为闪烁体有关的信息,该闪烁体具有足够的高能量,短波长输出(λ= 90 nm),因此可以与适当激活的比例计数器结合使用。信息提供了有关镧系元素双磷酸盐的合成,结构和发光特性的详细信息,这些镧类磷酸盐在被铈激活时是有效的闪烁体,其输出波长足够长,可以很好地与硅光电二极管检测器的响应相匹配。

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