【2h】

Interface control of bulk ferroelectric polarization

机译:体铁电极化的界面控制

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摘要

The control of material interfaces at the atomic level has led to novel interfacial properties and functionalities. In particular, the study of polar discontinuities at interfaces between complex oxides lies at the frontier of modern condensed matter research. Here we employ a combination of experimental measurements and theoretical calculations to demonstrate the control of a bulk property, namely ferroelectric polarization, of a heteroepitaxial bilayer by precise atomic-scale interface engineering. More specifically, the control is achieved by exploiting the interfacial valence mismatch to influence the electrostatic potential step across the interface, which manifests itself as the biased-voltage in ferroelectric hysteresis loops and determines the ferroelectric state. A broad study of diverse systems comprising different ferroelectrics and conducting perovskite underlayers extends the generality of this phenomenon.
机译:在原子水平上对材料界面的控制导致了新颖的界面性质和功能。特别是,对复杂氧化物之间的界面处的极性不连续性的研究是现代凝结物质研究的前沿。在这里,我们采用实验测量和理论计算相结合的方法,通过精确的原子尺度界面工程来证明对异质外延双层的整体性质(即铁电极化)的控制。更具体地说,通过利用界面价失配来影响跨界面的静电势阶跃来实现控制,这表现为铁电磁滞回线中的偏置电压并确定铁电态。对包含不同铁电体和导电钙钛矿底层的各种系统的广泛研究扩展了这种现象的普遍性。

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