论文标题

Ferreelectric Batio $ _3 $如何在Laino3和Basno $ _3 $的接口上调整二维电子气

How ferroelectric BaTiO$_3$ can tune a two-dimensional electron gas at the interface of LaInO3 and BaSnO$_3$: a first-principles study

论文作者

Fang, Le, Aggoune, Wahib, Ren, Wei, Draxl, Claudia

论文摘要

鉴于未来的电子设备,在两个绝缘氧化物钙蛋白酶之间形成的二维电子气体(2维型)的新兴兴趣提出了至关重要的基本问题。在密度功能理论的框架中,我们研究了在Laino $ _3 $/basno $ _3 $接口中控制2DEG的特征的可能性,包括包括铁电batio $ _3 $ layer。为此,我们研究了铁电偏振的方向如何影响2DEG的密度和限制。我们发现,将铁电极两极化与(向外)laino $ _3 $/basno $ _3 $接口会导致界面2DEG的累积(耗尽)。改变其大小,我们发现限制在basno $ _3 $ side中的2DEG电荷密度的线性效应。对优化的几何形状的分析,即包含Batio $ _3 $块的封装使Laino $ _3 $/basno $ _3 $ simains的结构扭曲使得结构扭曲较低,从而增强了2DEG密度。较厚的铁电层可以达到较高的极化幅度。我们讨论了所有这些发现背后的机制,并合理化了如何在考虑的异质结构中控制2DEG和2D孔气体的特性。总体而言,我们的结果可以推广到铁电,极性和非极性材料的其他组合。

The emerging interest in two-dimensional electron gases (2DEGs), formed at interfaces between two insulating oxide perovskites poses crucial fundamental question in view of future electronic devices. In the framework of density-functional theory, we investigate the possibility to control the characteristics of the 2DEG formed at the LaInO$_3$/BaSnO$_3$ interface by including a ferroelectric BaTiO$_3$ layer. To do so, we examine how the orientation of the ferroelectric polarization impacts density and confinement of the 2DEG. We find that aligning the ferroelectric polarization toward (outward) the LaInO$_3$/BaSnO$_3$ interface leads to an accumulation (depletion) of the interfacial 2DEG. Varying its magnitude, we find a linear effect on the 2DEG charge density that is confined within the BaSnO$_3$ side. Analysis of the optimized geometries revels that inclusion of the BaTiO$_3$ block makes structural distortions at the LaInO$_3$/BaSnO$_3$ less pronounced, which, in turn, enhances the 2DEG density. Thicker ferroelectric layers allow for reaching higher polarization magnitudes. We discuss the mechanisms behind all these findings and rationalize how the characteristics of both 2DEG and 2D hole gases can be controlled in the considered heterostructures. Overall, our results can be generalized to other combinations of ferroelectric, polar, and nonpolar materials.

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