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Non-stoichiometry defects and radiation hardness of lead tungstate crystals PbWO4

机译:钨酸铅晶体pbWO4的非化学计量缺陷和辐射硬度

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摘要

It has been stated many times that the formation of radiation infringements in PbWO4 is to a big extent stipulated by the non-stoichiometry defects of the crystals, arising in the process of their growth and annealing. To refine the idea of characteristics of the non-stoichiometry defects and their effect on the radiation hardness of PbWO4, the current study is aimed at the melt composition infringements during its evaporation and at optical transmission of crystals obtained in these conditions after their irradiation ((CS)-C-137 source). In the optical transmission measurements along with traditional techniques a method "in situ" was used, which provided the measurements in fixed points of the spectrum (380, 470 and 535nm) directly in the process of the irradiation. X-ray phase and fluorescence analysis of condensation products of vapours over PbWO4 melt has found PbWO4 phase in their content as well as compounds rich in lead PbO, Pb2WO5 with overall ratio Pb/W (3.2). Correspondingly, the lack of lead and variations in the content of oxygen are pointed out as the major growth defects of nonstoichiometry of PbWO4 crystals. The oxygen variations are determined by the partial oxygen pressure in the atmosphere of growth or annealing of the crystals. The obtained results were compared with known conceptions of PbWO4 crystal colour centres. The possibilities of the formation of these centres accounting for the discovered loss of lead and oxygen exchange between the external medium and the crystal were considered. (C) 2002 Elsevier Science B.V. All rights reserved.
机译:多次指出,PbWO4中辐射侵权的形成在很大程度上是由晶体的非化学计量缺陷引起的,该缺陷是在晶体的生长和退火过程中产生的。为了完善非化学计量缺陷的特征及其对PbWO4辐射硬度的影响,当前的研究针对蒸发过程中熔融成分的侵害以及辐照后在这些条件下获得的晶体的光透射(( CS)-C-137来源)。在光传输测量以及传统技术中,使用了“原位”方法,该方法直接在辐照过程中提供光谱固定点(380、470和535nm)的测量。 X射线相和PbWO4熔体上蒸气冷凝产物的荧光分析发现,PbWO4相的含量以及富含铅PbO,Pb2WO5的化合物的含量均为Pb / W(3.2)。相应地,指出铅的缺乏和氧含量的变化是PbWO4晶体非化学计量的主要生长缺陷。氧的变化取决于晶体生长或退火气氛中的氧分压。将获得的结果与已知的PbWO4晶体色心概念进行了比较。考虑了形成这些中心的可能性,这解释了外部介质与晶体之间发现的铅和氧交换的损失。 (C)2002 Elsevier Science B.V.保留所有权利。

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