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Ab initio molecular dynamics study of ferroelectric phase transitions .

机译:铁电相变的从头算分子动力学研究。

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We have undertaken the first ever fully first-principles simulations of ferroelectric crystals at finite temperature with an aim to understand the nature of their phase transitions. In particular, we have studied the different aspects of phase transitions in two protypical ferroelectrics - PbTiO3 and KH2PO4.; In PbTiO3, we have successfully reproduced the temperature-driven transition from a tetragonal to a cubic phase by using constant-pressure Car-Parrinello molecular dynamics. By defining suitable order parameters in terms of atomic displacements, we are able to monitor the approach of the cubic phase. Using a quasi-harmonic analysis, with the inclusion of a temperature dependent volume and the average thermal atomic displacements as the most basic effects of anharmonicity, we are also able to recover the softening of ferroelectric modes as well as other features seen in experiments. These observations confirm the predominantly displacive nature of the transition, while our simulations also indicate a possible build-up of disorder near the transition temperature.; We have also studied the isotope effects in the ferroelectric transition in KH2PO4 by quantifying the temperature and mass dependence of the extent of delocalization of the hydrogens. Using a recently developed ab initio Open Path-integral Molecular Dynamics scheme we have calculated both the real and momentum-space distribution of the hydrogens in both protonated and deuterated KDP above and below their respective transition temperatures. We find that the two crystals not only involve different transition mechanisms but also the fluctuations above the transition temperature are of a qualitatively different nature.
机译:我们已经在有限的温度下进行了铁电晶体的第一个完全第一性原理模拟,目的是了解它们的相变性质。特别是,我们研究了两种典型的铁电体-PbTiO3和KH2PO4中相变的不同方面。在PbTiO3中,我们已经通过使用恒压Car-Parrinello分子动力学成功地再现了温度驱动的从四方相到立方相的转变。通过根据原子位移定义合适的阶跃参数,我们能够监视立方相的逼近。使用准谐波分析,包括与温度有关的体积和平均热原子位移,这是非谐波最基本的影响,我们还能够恢复铁电模式的软化以及实验中看到的其他特征。这些观察结果证实了转变的主要是置换性质,而我们的模拟也表明在转变温度附近可能会形成无序现象。我们还通过量化氢离域化程度的温度和质量依赖性来研究KH2PO4中铁电跃迁中的同位素效应。使用最近开发的从头开始的“开放路径-整体分子动力学”方案,我们已经计算了质子化和氘代KDP中氢的氢在其各自的转变温度之上和之下的真实和动量空间分布。我们发现这两种晶体不仅涉及不同的跃迁机理,而且在跃迁温度以上的波动在性质上也不同。

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