论文标题

在压缩性紧张的srtio $ _ {3} $中建模极性顺序

Modeling polar order in compressively strained SrTiO$_{3}$

论文作者

Hallett, Alex, Harter, John W.

论文摘要

钛酸标是一种初期的铁电,其中超导以极低的掺杂水平出现。值得注意的是,通过应变或化学取代稳定极相可以显着提高超导临界温度,并且极性不稳定性在大多数提出的超导配对机制中起着关键作用。因此,对铁电性的严格理解对于阐明该材料中的电子配对机制至关重要。为了研究钛酸锶中极性顺序的性质,我们开发了一种简化的自由能模型,该模型仅包括在双轴压缩系统中捕获相关物理学所需的自由度。我们的模型能够计算具有接近DFT级准确性的大无序系统的能量。我们使用Monte Carlo方法模拟了铁电和抗铁路降期相变,并讨论了各种顺序参数之间的耦合。最后,我们评估了极性转变的特征,我们认为这既不是严格的位移也不是秩序。

Strontium titanate is an incipient ferroelectric in which superconductivity emerges at exceptionally low doping levels. Remarkably, stabilizing the polar phase through strain or chemical substitution has been shown to significantly enhance the superconducting critical temperature, and the polar instability plays a pivotal role in the majority of proposed superconducting pairing mechanisms. A rigorous understanding of ferroelectricity is therefore essential to elucidate the electron pairing mechanism in this material. To investigate the nature of the polar order in strontium titanate, we develop a simplified free energy model that only includes the degrees of freedom necessary to capture the relevant physics in a biaxially compressively strained system. Our model is able to calculate the energies of large, disordered systems with near DFT-level accuracy. We simulate the ferroelectric and antiferrodistortive phase transitions using the Monte Carlo method and discuss the coupling between various order parameters. Finally, we assess the character of the polar transition, which we find to be neither strictly displacive nor order-disorder.

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