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Symmetry reduction of δ-plutonium: an electronic-structure effect

机译:δreduction的对称还原:电子结构效应

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摘要

Using first-principles density-functional theory calculations, we show that the anomalously large anisotropy of δ-plutonium is a consequence of greatly varying bond-strengths between the 12 nearest neighbors. Employing the calculated bond strengths, we expand the tenants of classical crystallography by incorporating anisotropy of chemical bonds, which yields a structure with the monoclinic space group Cm for δ-plutonium rather than face-centered cubic Fm3m. The reduced space group for δ-plulonium enlightens why the ground state of the metal is monoclinic, why distortions of the metal are viable, and has considerable implications for the behavior of the material as it ages. These results illustrate how an expansion of classical crystallography that accounts for anisotropic electronic structure can explain complicated materials in a novel way.
机译:使用第一性原理的密度泛函理论计算,我们发现δlarge的异常大各向异性是12个最邻近邻域之间键强度变化很大的结果。利用计算出的键强度,我们通过结合化学键的各向异性扩展了经典晶体学的租户,从而产生了一种具有单斜空间组Cm的δ-rather结构,而不是面心立方Fm3m的结构。 δ-space的减少的空间群启发了为什么金属的基态是单斜晶的,为什么金属的变形是可行的,并且随着材料的老化而对材料的性能产生重大影响。这些结果说明了解释各向异性电子结构的经典晶体学的扩展如何以新颖的方式解释复杂的材料。

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