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Giant photovoltaic effects driven by residual polar field within unit-cell-scale LaAlO3 films on SrTiO3

机译:SrTiO3上单位晶格尺寸的LaAlO3薄膜中的残留极性场驱动巨大的光伏效应

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摘要

For polaronpolar heterostructures, Maxwell's theory dictates that the electric potential in the polar components will increase divergently with the film thickness. For LaAlO3/SrTiO3, a conceptually intriguing route, termed charge reconstruction, has been proposed to avert such “polar catastrophe”. The existence of a polar potential in LaAlO3 is a prerequisite for the validity of the charge reconstruction picture, yet to date, its direct measurement remains a major challenge. Here we establish unambiguously the existence of the residual polar potential in ultrathin LaAlO3 films on SrTiO3, using a novel photovoltaic device design as an effective probe. The measured lower bound of the residual polar potential is 1.0 V. Such a direct observation of the giant residual polar potential within the unit-cell-scale LaAlO3 films amounts to a definitive experimental evidence for the charge reconstruction picture, and also points to new technological significance of oxide heterostructures in photovoltaic and sensing devices with atomic-scale control.
机译:对于极性/非极性异质结构,麦克斯韦理论指出,极性组分中的电势将随膜厚而发散地增加。对于LaAlO3 / SrTiO3,提出了一种概念上引人入胜的途径,称为电荷重建,可避免此类“极性灾难”。 LaAlO3中存在极性电势是电荷重建图像有效的先决条件,但迄今为止,其直接测量仍然是一项重大挑战。在这里,我们使用新型光电器件设计作为有效探针,明确地确定了SrTiO3上的超薄LaAlO3薄膜中残留极性电势的存在。测得的残余极性电势的下限为1.0 V.对单元格尺度的LaAlO3薄膜中巨大的残余极性电势的直接观察为电荷重建图提供了确定的实验证据,同时也指出了新技术原子尺度控制的光伏和传感设备中氧化物异质结构的重要性。

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