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熔体组成与PbWO4:Y3+晶体闪烁性能稳定性的关系
引用本文:张昕,廖晶莹,谢建军,沈炳孚,邵培发,倪海洪,李长泉,殷之文.熔体组成与PbWO4:Y3+晶体闪烁性能稳定性的关系[J].无机材料学报,2002,17(6):1117-1123.
作者姓名:张昕  廖晶莹  谢建军  沈炳孚  邵培发  倪海洪  李长泉  殷之文
作者单位:中国科学院上海硅酸盐研究所,上海200050
基金项目:国家自然科学基金(59932002)
摘    要:部分PWO:Y^3 晶体辐照后光产额升高,并且辐照硬度对退火温度较敏感。本文选取未掺杂及Sb、La^3 ,Y^3 单掺和La^3 /Sb,Y^3 /Sb双掺的PWO样品进行对照实验,同时选取代表性晶体的顶部急冷料做了X射线荧光主量分析。结果发现;低剂量辐射后光产额升高现象只存在于含Y^3 离子的PWO晶体中,并且这类晶体往往存在420nm吸收带;在改进Bridgeman法生长PWO晶体的后期,使熔体保持一定程度的负电性将有利于抑制该现象,即可有效地抑制同样是负电性的间隙氧进入晶体。结合测试数据,本文讨论了该现象的起因和机理,提出了掺杂剂的选择原则。

关 键 词:熔体组成  PbWO4:Y^3+晶体  闪烁性能  稳定性  钨酸铅  掺杂  光产额  辐照硬度  
文章编号:1000-324X(2002)06-1117-07
收稿时间:2001-10-12
修稿时间:2001年10月12

Relationship between Melt Composition and Stability of Scintillation Properties of PbWO4:Y3+ Crystals
ZHANG Xin,LIAO Jing-Ying,XIE Jian-Jun,SHEN Bin-Fu,SHAO Pei-Fa,NI Hai-Hong,LI Chang-Quan,YIN Zhi-Wen.Relationship between Melt Composition and Stability of Scintillation Properties of PbWO4:Y3+ Crystals[J].Journal of Inorganic Materials,2002,17(6):1117-1123.
Authors:ZHANG Xin  LIAO Jing-Ying  XIE Jian-Jun  SHEN Bin-Fu  SHAO Pei-Fa  NI Hai-Hong  LI Chang-Quan  YIN Zhi-Wen
Affiliation:ShanghaiInstituteofCeramics;ChineseAcademyofSciences;Shanghai200050;China
Abstract:The light yield of some Y3+ doping PbWO4 crystals increases after low dose rate irradiation, and the radiation hardness is sensitive to annealing temperature. In this study, the experiments among Sb, La3+, Y3+ doping and La3+/Sb, Y3+/Sb co-doping PWO crystals were carried out, the composition of the melt in the top of the crystals was also measured by the XRF method. The experimental results show that this exceptional behavior only exists in PWO crystals containing Y3+ ions. In addition those crystals have 420nm absorption band in optical transmission spectra. In the processes of PWO crystal growth by the modified Bridgeman method, it is salutary to keep the melt in a negative charge environment, thus preventing the formation of interstitial oxygen. Integrating with the data obtained, the mechanism of this phenomenon was discussed, and the principles of choosing dopants to suppress it were also brought forward.
Keywords:lead tungstate  doping  light yield  melt  radiation hardness
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