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Effect of Mg~(2+) codoping on cathodoluminescence properties of Ce~(3+) activated GGAG single crystals

机译:Mg〜(2+)编码对Ce〜(3+)活性GGG单晶的阴极发光性能的影响

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High R&D activity in the field of inorganic scintillators used for ionizing radiation detection has been triggered mainly by the pressing needs of modern medical imaging, high energy physics, homeland security and environmental applications [1]. Recently, a new material concept was defined based on multicomponent (Gd, RE)3(Ga,Al)5O12 host, RE=Y, Lu. Doped with Ce3+ and admixture with balanced Gd and Ga content host compositions showed amazingly high light yield up to 58 000 photons/MeV [2]. More recently, a strategy based on co-doping with alkali earth AE2+ into Ce3+ activated YAG [3], LuAG [5] or GGAG [5] single crystal garnet scintillators significantly improved some scintillation characteristics.
机译:用于电离辐射检测的无机闪烁体领域的高研发活性主要是通过现代医学成像,高能物理,国土安全和环境应用的压制需求引发[1]。最近,基于多组分(GD,RE)3(Ga,Al)5012主机,Re = Y,Lu来定义新的材料概念。掺杂有CE3 +和具有平衡的GD和GA含量宿主组合物的混合物显示出令人惊讶的高光率,高达58 000光子/ MEV [2]。最近,一种基于与碱土AE2 +共掺杂的策略进入CE3 +活化的YAG [3],Luag [5]或GGAG [5]单晶石榴石闪烁体显着提高了一些闪烁特性。

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