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Crystallization processes in the phase change material Ge2Sb2Te5: Unbiased density functional/molecular dynamics simulations

机译:相变材料Ge2Sb2Te5中的结晶过程:无偏密度泛函/分子动力学模拟

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摘要

Three extensive density functional/molecular dynamics simulations of the crystallization of amorphous Ge2Sb2Te5 (460 atoms) [Phys. Rev. B 90, 184109 (2014)] have been completed with simulation times of up to 8.2 ns. Together with the results of earlier simulations with and without a crystallite seed, the results clarify essential features of a complicated process. They emphasize, in particular, the stochastic nature of crystallization, the effect of bond orientations and percolation, and the importance of extended simulations of sufficiently large samples. This is particularly evident in describing the role of crystallites that can merge to form larger units or hinder complete crystallization by the formation of grain boundaries. The total pair distribution functions for the final structures are compared with available neutron and x-ray diffraction data.
机译:非晶态Ge2Sb2Te5(460个原子)结晶的三个广泛的密度泛函/分子动力学模拟。 Rev. B 90,184109(2014)]的完成时间高达8.2 ns。连同早期有无晶种的模拟结果,这些结果阐明了复杂过程的基本特征。他们特别强调了结晶的随机性,键取向和渗滤的影响以及对足够大的样品进行扩展模拟的重要性。这在描述微晶的作用时特别明显,微晶可以融合形成更大的单元,或由于形成晶界而阻碍完全结晶。将最终结构的总对分布函数与可用的中子和X射线衍射数据进行比较。

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