论文标题

从深势分子动力学中的SRTIO3中的结构相变

Structural Phase Transitions in SrTiO3 from Deep Potential Molecular Dynamics

论文作者

He, Ri, Wu, Hongyu, Zhang, Linfeng, Wang, Xiaoxu, Fu, Fangjia, Liu, Shi, Zhong, Zhicheng

论文摘要

钛酸标记(SRTIO3)被认为是氧化电子电子的重要材料。它的许多显着特征之一是由抗逆转录晶格模式驱动的微妙结构相变,从高温立方相到低温四方相。经典分子动力学(MD)模拟是一种有效的技术,可以揭示相变的原子特征,但是其应用通常受经验跨原子势的准确性的限制。在这里,我们使用第一原理密度功能理论(DFT)计算的数据,基于机器学习方法开发了SRTIO3的准确潜力(DP)模型。 DP模型具有DFT级的精度,能够执行有效的MD模拟和准确的属性预测。使用DP模型,我们研究了温度驱动的立方到四方相变,并构建了SRTIO3的平面两轴应变 - 温度相图。该模拟表明,应变诱导的铁电相的特征是两个阶参数,即铁电畸变和抗铁二抗,而铁电相变的既有位移又阶的阶特字符。这项工作为开发其他复杂钙钛矿材料的精确DP模型奠定了基础。

Strontium titanate (SrTiO3) is regarded as an essential material for oxide electronics. One of its many remarkable features is subtle structural phase transition, driven by antiferrodistortive lattice mode, from a high-temperature cubic phase to a low-temperature tetragonal phase. Classical molecular dynamics (MD) simulation is an efficient technique to reveal atomistic features of phase transition, but its application is often limited by the accuracy of empirical interatomic potentials. Here, we develop an accurate deep potential (DP) model of SrTiO3 based on a machine learning method using data from first-principles density functional theory (DFT) calculations. The DP model has DFT-level accuracy, capable of performing efficient MD simulations and accurate property predictions. Using the DP model, we investigate the temperature-driven cubic-to-tetragonal phase transition and construct the in-plane biaxial strain-temperature phase diagram of SrTiO3. The simulations demonstrate that strain-induced ferroelectric phase is characterized by two order parameters, ferroelectric distortion and antiferrodistortion, and the ferroelectric phase transition has both displacive and order-disorder characters. This works lays the foundation for the development of accurate DP models of other complex perovskite materials.

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