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The role of activator concentration and precipitate formation on optical and dosimetric properties of KCl:Eu2+ storage phosphor detectors

机译:活化剂浓度和沉淀物形成对KCl:Eu2 +荧光粉探测器的光学和剂量学性质的影响

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摘要

>Purpose: The activator ion (Eu2+ in KCl:Eu2+) plays an important role in the photostimulated luminescence (PSL) mechanism of storage phosphor radiation detectors. In order to design an accurate, effective, and robust detector, it is important to understand how the activator ion concentration affects the structure and, consequently, radiation detection properties of KCl:Eu2+.>Methods: Potassium chloride pellets were fabricated with various amounts of europium dopant (0.01–5.0 mol.% Eu2+). Clinical radiation doses were given with a 6 MV linear accelerator. Radiation doses larger than 100 Gy were given with a 137Cs irradiator. Dose response curves, radiation hardness, and temporal signal stability were measured using a laboratory PSL readout system. The crystal structure of the material was studied using x ray diffraction and luminescence spectroscopy.>Results: The most intense PSL signal was from samples with 1.0 mol.% Eu. However, samples with concentrations higher than 0.05 mol.% Eu exhibited significant degradation in PSL intensity for cumulated doses larger than 3000 Gy. Structural and luminescence spectroscopy showed clear evidence of precipitate phases within the KCl lattice, especially for high activator concentrations. Analysis of PL emission spectra showed that interactions between Eu-Vc dipoles and Eu-Vc trimers could explain trends in PSL sensitivity and radiation hardness observations.>Conclusions: The concentration of the activator ion (Eu2+) significantly affects radiation detection properties of the storage phosphor KCl:Eu2+. An activator concentration between 0.01 and 0.05 mol.% Eu in KCl:Eu2+ storage phosphor detectors is recommended for linear dose response, good PSL sensitivity, predictable temporal stability, and high reusability for megavoltage radiation detection.
机译:>目的:活化剂离子(KCl中的Eu 2 + :Eu 2 + )在光致发光(PSL)机理中起着重要作用。存储磷光辐射探测器。为了设计一个准确,有效和耐用的检测器,重要的是要了解活化剂离子浓度如何影响KCl:Eu 2 + 的结构以及辐射检测特性。>方法:用各种数量的do掺杂剂(0.01–5.0 mol。%Eu 2 + )制备氯化钾微丸。用6 MV线性加速器给予临床放射剂量。用 137 Cs辐照器给予大于100 Gy的辐射剂量。使用实验室PSL读数系统测量剂量响应曲线,辐射硬度和时间信号稳定性。使用X射线衍射和发光光谱研究了该材料的晶体结构。>结果:最强的PSL信号来自具有1.0 mol。%Eu的样品。但是,对于浓度大于3000 Gy的样品,Eu浓度高于0.05 mol。%的样品表现出PSL强度的显着降低。结构和发光光谱学清楚地证明了KCl晶格内有沉淀相,特别是对于高浓度的活化剂。 PL发射光谱分析表明,Eu-Vc偶极子与Eu-Vc三聚体之间的相互作用可以解释PSL灵敏度和辐射硬度观测结果的趋势。>结论:活化剂离子的浓度(Eu 2 + )会显着影响存储磷光体KCl:Eu 2 + 的辐射检测性能。建议使用活化剂浓度在KCl:Eu 2 + 荧光粉检测器中的Eu浓度在0.01到0.05 mol。%之间,以实现线性剂量响应,良好的PSL灵敏度,可预测的时间稳定性以及用于兆伏电压检测的高度可重用性。

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