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Order parameter and connectivity topology analysis of crystalline ceramics for nuclear waste immobilization

机译:核废料固定结晶陶瓷的有序参数和连通拓扑分析

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摘要

We apply bond order and topological methods to the problem of analysing the results of radiation damage cascade simulations in ceramics. Both modified Steinhardt local order and connectivity topology analysis techniques provide results that are both translationally and rotationally invariant and which do not rely on a particular choice of a reference structure. We illustrate the methods with new analyses of molecular dynamics simulations of single cascades in the pyrochlores Gd2Ti2O7 and Gd2Zr2O7 similar to those reported previously (Todorov et al 2006 J. Phys.: Condens. Matter 18 2217). Results from the Steinhardt and topology analyses are consistent, while often providing complementary information, since the Steinhardt parameters are sensitive to changes in angular arrangement even when the overall topological connectivity is fixed. During the highly non-equilibrium conditions at the start of the cascade, both techniques reveal significant localized transient structural changes and variation in the cation connectivity. After a few picoseconds, the connectivity is largely fixed, while the order parameters continue to change. In the zirconate there is a shift to the anion disordered system while in the titanate there is substantial reversion and healing back to the parent pyrochlore structure.
机译:我们将键序和拓扑方法应用于分析陶瓷中辐射损伤级联模拟结果的问题。改进的Steinhardt本地顺序和连接拓扑分析技术都提供了平移和旋转不变的结果,并且这些结果不依赖于参考结构的特定选择。我们用分子动力学模拟的新分析说明了烧绿石中的单个级联Gd2Ti2O7和Gd2Zr2O7的方法,该方法类似于先前报道的方法(Todorov等人2006 J. Phys.:Condens。Matter 18 2217)。 Steinhardt和拓扑分析的结果是一致的,尽管经常提供补充信息,因为Steinhardt参数对角度排列的变化敏感,即使整个拓扑连接性固定。在级联开始时高度不平衡的情况下,两种技术都显示出显着的局部瞬态结构变化和阳离子连通性的变化。几皮秒后,连通性在很大程度上得以固定,而订购参数则不断变化。在锆酸盐中,向阴离子无序体系转移,而在钛酸盐中,存在实质性的还原并恢复为母体烧绿石结构。

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