Departamento de Física and Instituto de Física La Plata (CONICET-UNLP), Facultad de Ciencias Exactas, Universidad Nacional de La Plata, CC 67, 1900 La Plata, Argentina.
J Phys Condens Matter. 2010 Jun 2;22(21):215501. doi: 10.1088/0953-8984/22/21/215501. Epub 2010 Apr 30.
The quadrupolar hyperfine interactions of in-diffused (111)In --> (111)Cd probes in polycrystalline isostructural Zr(4)Al(3) and Hf(4)Al(3) samples containing small admixtures of the phases (Zr/Hf)(3)Al(2) were investigated. A strong preference of (111)In solutes for the contaminant (Zr/Hf)(3)Al(2) minority phases was observed. Detailed calculations of the electric field gradient (EFG) at the Cd nucleus using the full-potential augmented plane wave + local orbital formalism allowed us to assign the observed EFG fractions to the various lattice sites in the (Zr/Hf)(3)Al(2) compounds and to understand the preferential site occupation of the minority phases by the (111)In atoms. The effects of the size of the supercell and relaxation around the oversized In and Cd probe atoms were investigated in detail.
研究了含有少量(Zr/Hf)3Al2相的多晶等结构 Zr4Al3和 Hf4Al3样品中(111)In 扩散到(111)Cd 探针的四极超精细相互作用。观察到(111)In 溶质对杂质(Zr/Hf)3Al2少数相有很强的偏好。使用全势能增广平面波+局域轨道方法对 Cd 核的电场梯度(EFG)进行详细计算,使我们能够将观察到的 EFG 分数分配到(Zr/Hf)3Al2化合物的各个晶格位置,并理解少数相优先占据(111)In 原子的位置。详细研究了超胞大小和过大的 In 和 Cd 探针原子周围弛豫的影响。