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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Point defects in uranium dioxide: Ab initio pseudopotential approach in the generalized gradient approximation
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Point defects in uranium dioxide: Ab initio pseudopotential approach in the generalized gradient approximation

机译:二氧化铀中的点缺陷:广义梯度近似中的从头算伪势方法

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摘要

The stability of point defects in uranium dioxide is studied using an ab initio plane wave pseudopotential method in the generalized gradient approximation of the density functional theory. Uranium pseudopotentials are first tested in both the generalized gradient approximation and the local density approximation on metallic phases of uranium and on uranium dioxide. It is found that the generalized gradient approximation gives the best description of these materials. The energies of formation of point defects (single vacancies and interstitials, Frenkel pairs and Schottky defects) in UO2 are calculated. The values obtained lead to a reliable set of numerical data that are analyzed in the framework of the point defect model commonly used to assess defect concentrations in uranium dioxide as a function of the stoichiometry. The ability of the point defect model to accurately reproduce defect concentrations in uranium dioxide is discussed. (c) 2005 Elsevier B.V. All rights reserved.
机译:在密度泛函理论的广义梯度近似中,使用从头算平面波伪势方法研究了二氧化铀中点缺陷的稳定性。首先在铀的金属相和二氧化铀的广义梯度近似和局部密度近似中测试了铀的伪势。发现广义梯度近似给出了这些材料的最好描述。计算了UO2中点缺陷(单个空位和间隙,Frenkel对和肖特基缺陷)形成的能量。获得的值产生一组可靠的数字数据,这些数据在点缺陷模型的框架内进行分析,该模型通常用于评估二氧化铀中的缺陷浓度与化学计量的关系。讨论了点缺陷模型准确再现二氧化铀中缺陷浓度的能力。 (c)2005 Elsevier B.V.保留所有权利。

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