As-grown color centers and radiation damage in Ce3+ -doped dense rare-earth orthoaluminate scintillators

A. Petrosyan, G. Shirinyan, K. Ovanesyan, T. Butaeva, C. Pédrini, C. Dujardin, A. Belsky
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引用次数: 1

Abstract

Optical transmission and scintillation light yields were measured in Ce3+-doped LuAlO3 and (LuY)AlO3 solid solution single crystals grown by the vertical Bridgman and Czochralski processes. Depending on the growth history, the crystals exhibit dissimilar transmission properties in the UV range. The as-grown color centers possibly responsible for poor transmission properties in the range of Ce3+ emission were characterized by exposing non-activated crystals to 1 Mrad of 60Co gamma-rays. Radiation induced absorption in Ce3+-doped crystals is found to be higher in crystals with good initial transmission properties, while the crystals with high density of as-grown color centers are radiation hard. With time, partial slow-rate natural recovery from the damage was observed at room temperature in all studied crystals. Annealing at higher temperatures or optical bleaching contribute to recombination of gamma-ray induced color centers but affect inconsiderably the as-grown color centers.
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Ce3+掺杂致密稀土正铝酸盐闪烁体的生长色心和辐射损伤
采用垂直Bridgman和Czochralski工艺生长Ce3+掺杂的LuAlO3和(LuY)AlO3固溶体单晶,测量了其光透射率和闪烁光产率。根据生长历史的不同,晶体在紫外范围内表现出不同的透射特性。通过将非活化晶体暴露在1 Mrad的60Co伽马射线中,对可能导致Ce3+发射范围内透射性能差的生长色中心进行了表征。在Ce3+掺杂晶体中,初始透射性能好的晶体辐射诱导吸收较高,而生长色心密度高的晶体辐射硬。随着时间的推移,在室温下观察到所有被研究的晶体从损伤中部分缓慢的自然恢复。高温退火或光学漂白有助于伽马射线诱导色中心的重组,但对生长色中心的影响不大。
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