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加载光子带隙膜系BaF2晶体闪烁光慢成分抑制和抗γ辐照损伤的研究
引用本文:顾牡,马晓辉,徐荣昆,吴永刚,顾春时,陈玲燕,温树槐.加载光子带隙膜系BaF2晶体闪烁光慢成分抑制和抗γ辐照损伤的研究[J].强激光与粒子束,2005,17(1):42-46.
作者姓名:顾牡  马晓辉  徐荣昆  吴永刚  顾春时  陈玲燕  温树槐
作者单位:1.同济大学 波耳固体物理研究所,上海 200092;2.中国工程物理研究院核物理与化学研究所,四川 绵阳 621900
基金项目:国家863计划项目资助课题;教育部高等学校优秀青年教师教学科研奖励计划资助课题;高等学校博士学科点科研基金、上海市教育委员会曙光计划(2SG19)和青年教师项目资助课题(01QN18)
摘    要: 根据BaF2晶体闪烁光快、慢成分波段的不同,设计并制备了用于抑制该晶体闪烁光慢成分的Al2O3/MgF2/Al/MgF2…光子带隙膜系。实验结果显示:加载光子带隙膜系的BaF2晶体,其闪烁光快/慢成分比提高80倍以上;经剂量为1×105 Gy的60Co γ射线辐照后,其透射光谱、发射光谱和发光衰减时间谱没有明显的变化,这表明由光子带隙膜系与BaF2晶体所构成的快闪烁器件不仅可有效避免慢成分的干扰,而且还具有很强的抗γ辐射性能。

关 键 词:BaF2晶体  光子带隙膜系  慢成分抑制  辐照损伤
文章编号:1001-4322(2005)01-0042-05
收稿时间:2004/2/17
修稿时间:2004年2月17日

Slow component suppression and ν radiation hardness of BaF2 crystal modified by photonic band multilayer filter
GU Mu,MA Xiao-hui,XU Rong-kun.Slow component suppression and ν radiation hardness of BaF2 crystal modified by photonic band multilayer filter[J].High Power Laser and Particle Beams,2005,17(1):42-46.
Authors:GU Mu  MA Xiao-hui  XU Rong-kun
Institution:1. Pohl Institute of Solid State Physics, Tongji University, Shanghai 200092, China;2. Institute of Nuclear Physics and Chemistry, CAEP, P. O. Box 919 212, Mianyang 621900, China
Abstract:On the basis of the different emission bands between the fast and slow components in BaF_2 crystal, the photonic band multilayer filter with 3.5 periods of Al_2O_3/MgF_2/Al/MgF_2... was designed and developed in order to suppress the slow component of the scintillation light in BaF_2. It is shown that the filter can increase more than 80 times of the ratio of the intensities of the fast emission to the slow one, while the transmission, emission and decay time spectra of BaF_2 crystal modified by the filter are not changed apparently after ~(60)Co γ-ray irradiation under the dose of 10~5 Gy. The results indicate that BaF_2 crystal modified by the filter can not only avoid the interference of the slow component effectively, but also keep the good radiation resistance.
Keywords:BaF_2 crystal  Photonic band multilayer filter  Slow component suppression  Radiation damage
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