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首页> 外文期刊>The Journal of Chemical Physics >A generalized solid-state nudged elastic band method
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A generalized solid-state nudged elastic band method

机译:广义固态微带法

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摘要

A generalized solid-state nudged elastic band (G-SSNEB) method is presented for determining reaction pathways of solid-solid transformations involving both atomic and unit-cell degrees of freedom. We combine atomic and cell degrees of freedom into a unified description of the crystal structure so that calculated reaction paths are insensitive to the choice of periodic cell. For the rock-salt to wurtzite transition in CdSe, we demonstrate that the method is robust for mechanisms dominated either by atomic motion or by unit-cell deformation; notably, the lowest-energy transition mechanism found by our G-SSNEB changes with cell size from a concerted transformation of the cell coordinates in small cells to a nucleation event in large cells. The method is efficient and can be applied to systems in which the force and stress tensor are calculated using density functional theory.
机译:提出了一种广义的固态微动弹性带(G-SSNEB)方法,用于确定涉及原子和晶胞自由度的固-固转变的反应路径。我们将原子和细胞的自由度结合到晶体结构的统一描述中,以使计算出的反应路径对周期细胞的选择不敏感。对于CdSe中的岩石盐向纤锌矿的转变,我们证明了该方法对于原子运动或晶胞变形主导的机理是鲁棒的。值得注意的是,我们的G-SSNEB发现的最低能量跃迁机制随细胞大小的变化而变化,从小细胞的细胞坐标协同转化为大细胞的成核事件。该方法是有效的,并且可以应用于使用密度泛函理论计算力和应力张量的系统。

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