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Determination of symmetry reduced structures by a soft-phonon analysis in Ni_2MnGa

机译:NI_2MNGA中的软声子分析测定对称性结构的测定

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The shape memory effect of Ni_2MnGa is closely related to the fact that the material undergoes a martensitic phase transition, which results in symmetry reductions and deformations when cooling down. However, there are still substantial uncertainties about the phase diagram in the martensitic phase. Particularly challenging is the determination of those phases, which are characterized by shuffling structures. We have applied density functional theory to this problem, which allows an accurate determination of the potential energy surface as a function of the lattice constants. Based on these results we compute ab initio phonon spectra and discuss in detail how they can be used to extract detailed information about the type of shuffling structures and to systematically and efficiently identify stable atomic configurations.
机译:Ni_2mnga的形状记忆效应与材料经历的事实密切相关,即在冷却时导致对称降低和变形。然而,仍然存在关于马氏体相中的相图的实质性不确定性。特别具有挑战性是测定这些阶段,其特征在于擦拭结构。我们对该问题应用了密度泛函理论,这允许准确地确定势能表面作为晶格常数的函数。基于这些结果,我们计算AB Initio Phonon光谱并详细讨论它们如何用于提取有关混洗结构类型的详细信息,并系统地和有效地识别稳定的原子配置。

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