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Dynamic mechanisms of the structural phase transitions in KnbO_3: molecular dynamics simulations

机译:KnbO_3中结构相变的动力学机制:分子动力学模拟

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摘要

The question on the dominant driving mechanism (displacive or order-disorder) at each Structural phase transition of KNbO_3 is investigated by means of molecular dynamics simulations. To this purpose, we first develop a shell model by determining its potential parameters in order to reproduce the ferroelectric instabilities obtained by first-principles total energy calculations. The phase diagram as a function of temperature is obtained through constant-pressure molecular dynamics simulations. The analysis of the dynamical structure factor and the microscopic dynamics of the particles in the different phases allows us to reveal the nature of the dynamics associated with each structural transition. Correlations between local polarizations forming chain-like precursor clusters in the paraelectric phase are examined.
机译:通过分子动力学模拟研究了在KNbO_3的每个结构相变中的主导驱动机理(位移或有序无序)的问题。为此,我们首先通过确定其势能参数来开发壳模型,以便重现通过第一性原理总能量计算获得的铁电不稳定性。通过恒压分子动力学模拟获得作为温度的函数的相图。对动力学结构因子的分析和不同相中颗粒的微观动力学,使我们能够揭示与每个结构转变相关的动力学性质。研究了在顺电相中形成链状前体簇的局部极化之间的相关性。

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