Synchrotron VUV-UV and positron lifetime spectroscopy study of vacancy-type defects in reactor neutron-irradiated MgO·nAl2O3 (n = 2)

Abu Zayed Mohammad Saliqur Rahman, Xingzhong Cao, Baoyi Wang, J. Evslin, Qiu Xu, K. Atobe
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引用次数: 0

Abstract

We investigated neutron-irradiation-induced point defects in spinel single crystals using a synchrotron VUV-UV source and positron lifetime spectroscopy. Photoexcitation (PE) spectra near 230 nm and their corresponding photoluminescence (PL) spectra at 475 nm were attributed to F-centers. With increasing irradiation temperature and fluence, PE efficiency and PL intensity decreased dramatically. Positron lifetimes (PLT) of neutron-irradiated and non-irradiated samples were measured to identify the cation vacancies. A PLT measurement of 250 ps was obtained in a neutron-irradiated (20 K) sample which is tentatively attributed to an aluminum monovacancy. Decreasing PLT with higher irradiation indicates the formation of oxygen-vacancy complex centers.
反应堆中子辐照MgO·nAl2O3 (n = 2)中空位型缺陷的同步加速器uv - uv和正电子寿命谱研究
利用同步加速器紫外-紫外光源和正电子寿命谱研究了尖晶石单晶中中子辐照引起的点缺陷。在230 nm附近的光激发(PE)光谱和相应的475 nm的光致发光(PL)光谱归属于f中心。随着辐照温度和辐照流量的增加,PE效率和PL强度急剧下降。通过测量中子辐照和未辐照样品的正电子寿命(PLT)来确定阳离子空位。在中子辐照(20k)样品中获得了250 ps的PLT测量值,该样品初步归因于铝单空位。随着辐照强度的增加,PLT的减小表明氧-空位络合物中心的形成。
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来源期刊
Cogent Physics
Cogent Physics PHYSICS, MULTIDISCIPLINARY-
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