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机械可调谐量子隧穿揭示的减小尺寸下的增强挠曲电效应。

Enhanced flexoelectricity at reduced dimensions revealed by mechanically tunable quantum tunnelling.

机构信息

Center for Correlated Electron Systems, Institute for Basic Science (IBS), Seoul, 08826, Korea.

Department of Physics and Astronomy, Seoul National University, Seoul, 08826, Korea.

出版信息

Nat Commun. 2019 Feb 1;10(1):537. doi: 10.1038/s41467-019-08462-0.

Abstract

Flexoelectricity is a universal electromechanical coupling effect whereby all dielectric materials polarise in response to strain gradients. In particular, nanoscale flexoelectricity promises exotic phenomena and functions, but reliable characterisation methods are required to unlock its potential. Here, we report anomalous mechanical control of quantum tunnelling that allows for characterising nanoscale flexoelectricity. By applying strain gradients with an atomic force microscope tip, we systematically polarise an ultrathin film of otherwise nonpolar SrTiO, and simultaneously measure tunnel current across it. The measured tunnel current exhibits critical behaviour as a function of strain gradients, which manifests large modification of tunnel barrier profiles via flexoelectricity. Further analysis of this critical behaviour reveals significantly enhanced flexocoupling strength in ultrathin SrTiO, compared to that in bulk, rendering flexoelectricity more potent at the nanoscale. Our study not only suggests possible applications exploiting dynamic mechanical control of quantum effect, but also paves the way to characterise nanoscale flexoelectricity.

摘要

挠曲电效应是一种普遍的机电耦合效应,所有介电材料都会因应变梯度而产生极化。特别是,纳米级挠曲电效应有望产生奇特的现象和功能,但需要可靠的特征化方法来挖掘其潜力。在这里,我们报告了一种异常的机械控制量子隧穿的现象,这种现象可以用来对纳米级挠曲电效应进行特征化。通过原子力显微镜针尖施加应变梯度,我们系统地极化了一层非常薄的非极性 SrTiO 薄膜,并同时测量了它的隧穿电流。测量得到的隧穿电流作为应变梯度的函数表现出临界行为,这表明通过挠曲电效应可以对隧穿势垒轮廓进行大的修改。对这种临界行为的进一步分析表明,与体材料相比,超薄 SrTiO 中的挠曲耦合强度显著增强,这使得挠曲电效应在纳米尺度上更加强大。我们的研究不仅为利用量子效应的动态机械控制来开发可能的应用提供了思路,也为纳米级挠曲电效应的特征化铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c721/6358620/3f6270e4faac/41467_2019_8462_Fig1_HTML.jpg

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