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Multiple doping of CsI:Tl crystals and its effect on afterglow

机译:CsI:Tl晶体的多次掺杂及其对余辉的影响

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摘要

Despite the acknowledged advantages of CsI:Tl in many scintillator applications, a characteristic property that undermines its use in high-speed radiographic and radionuclide imaging is the presence of a strong afterglow component in its scintillation decay. This causes pulse pileup in high count-rate applications, reduced energy resolution in radionuclide imaging, and reconstruction artifacts in computed tomography applications. The research outlined here addresses the specific issue of suppressing the afterglow in CsI:Tl crystals by modifying them with codopants. In previous work we reported that one specific codopant, Eu2+, was particularly effective in this regard, lowering the normalized intensity of the afterglow in the time range of 10 μs – 100 ms by almost two orders of magnitude compared to conventional material. We also found, however, that the extent of the suppressive effect was significantly influenced by the presence of additional additives, some of which were inadvertently introduced by the very material that provided the primary Eu codopant itself. The effects of these secondary codopants, which include elemental iodine and various oxidic species, are addressed in the present investigation.
机译:尽管CsI:Tl在许多闪烁体应用中具有公认的优势,但破坏其在高速射线照相和放射性核素成像中的使用的特征是,在其闪烁衰减中存在强余辉成分。这会导致高计数率应用中的脉冲堆积,放射性核素成像中能量分辨率的降低以及计算机断层摄影应用中的重建伪像。这里概述的研究解决了通过用共掺杂剂修饰CsI:Tl晶体来抑制余辉的具体问题。在先前的工作中,我们报道了一种特定的共掺杂物Eu 2 + 在这方面特别有效,将10μs– 100 ms时间范围内的余辉归一化强度降低了将近两个数量级。与传统材料相比但是,我们还发现,抑制作用的程度受到其他添加剂的存在的显着影响,其中一些添加剂是由提供主要Eu共掺杂物本身的材料无意中引入的。本研究探讨了这些次要共掺杂物(包括元素碘和各种氧化性物质)的作用。

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