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Properties of Transparent (Gd,Lu)_3(Al,Ga)_5O_(12):Ce Ceramic with Mg, Ca and Ce Co-dopants

机译:透明(Gd,Lu)_3(Al,Ga)_5O_(12):Mg,Ca和Ce共掺杂的Ce陶瓷的性能

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Cerium activated mixed lutetium/gadolinium- and aluminum/gallium-based garnets have great potential as host scintillators for medical imaging applications. (Gd,Lu)_3(Al,Ga)_5O_(12):Ce and denoted as GLuGAG feature high effective atomic number and good light yield, which make it particularly attractive for Positron Emission Tomography (PET) and other y-ray detection applications. For PET application, rapid decay and good timing resolution are extremely important. Most Ce-doped mixed garnet materials such as GLuGAG:Ce, have their main decay component at around 80 ns. However, it has been reported that the decays of some single crystal scintillators (e.g., LSO and GGAG) can be effectively accelerated by codoping with selected additives such as Ca, Mg and B. In this study, transparent polycrystalline (Gd,Lu)_3(Al,Ga)_5O_(12):Ce ceramics codoped with Ca or Mg or additional Ce, were fabricated by the sinter-HIP approach. It was found the transmission of the ceramics are closely related to the microstructure of the ceramics. As the co-dopant levels increase, 2nd phase occurs in the ceramic and thus transparency of the ceramic decreases. Ca and Mg co-doping in GLuGAG:Ce ceramic effectively accelerate decays of GLuGAG:Ce ceramics at a cost of light output. However, additional Ce doping in the GLuGAG:Ce has no benefit on improving decay time but, on the other hand, reduces transmission, light output. The mechanism under the different scintillation behaviors with Mg, Ca and Ce dopants are discussed. The results suggest that decay time of GLuGAG:Ce ceramics can be effectively tailored by co-doping GLuGAG:Ce ceramic with Mg and Ca for applications with optimal timing resolution.
机译:铈活化的混合// ga和铝/镓基石榴石具有巨大的潜力,可以用作医学成像应用的主闪烁体。 (Gd,Lu)_3(Al,Ga)_5O_(12):Ce并表示为GLuGAG具有高有效原子序数和良好的光产率,这使其特别适合正电子发射断层扫描(PET)和其他y射线检测应用。对于PET应用,快速衰减和良好的时序分辨率至关重要。大多数掺Ce的混合石榴石材料,例如GLuGAG:Ce,其主要衰减分量约为80 ns。然而,据报道,某些单晶闪烁体(例如,LSO和GGAG)的闪烁可通过与选定的添加剂(例如Ca,Mg和B)共掺杂而有效地加速。在这项研究中,透明多晶(Gd,Lu)_3通过烧结HIP方法制备了(Al,Ga)_5O_(12):掺有Ca或Mg或其他Ce的Ce陶瓷。发现陶瓷的透射率与陶瓷的微观结构密切相关。随着共掺杂物含量的增加,第二相在陶瓷中发生,因此陶瓷的透明性降低。 GLuGAG:Ce陶瓷中的Ca和Mg共掺杂有效地加速了GLuGAG:Ce陶瓷的衰变,但以光输出为代价。但是,在GLuGAG:Ce中进行额外的Ce掺杂对改善衰减时间没有好处,但是另一方面,它会降低透射率和光输出。讨论了镁,钙和铈掺杂物在不同闪烁行为下的机理。结果表明,通过将Mg和Ca共掺杂GLuGAG:Ce陶瓷,可以有效地调整GLuGAG:Ce陶瓷的衰减时间,以实现最佳时序分辨率的应用。

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