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扫描光电电流显微镜测量的复杂氧化物界面的电子能带排列。

Electronic Band Alignment at Complex Oxide Interfaces Measured by Scanning Photocurrent Microscopy.

机构信息

Department of Physics and Department of Energy Systems Research, Ajou University, Suwon, 16499, Korea.

出版信息

Sci Rep. 2017 Jun 19;7(1):3824. doi: 10.1038/s41598-017-04265-9.

Abstract

The band alignment at an AlO/SrTiO heterointerface forming a two-dimensional electron gas (2DEG) was investigated using scanning photocurrent microscopy (SPCM) in an electrolyte-gated environment. We used a focused UV laser source for above-the-bandgap illumination on the SrTiO layer, creating electron-hole pairs that contributed to the photocurrent through migration towards the metal electrodes. The polarity of the SPCM signals of a bare SrTiO device shows typical p-type behavior at zero gate bias, in which the photogenerated electrons are collected by the electrodes. In contrast, the SPCM polarity of 2DEG device indicates that the hole carriers were collected by the metal electrodes. Careful transport measurements revealed that the gate-dependent conductance of the 2DEG devices exhibits n-type switching behavior. More importantly, the SPCM signals in 2DEG devices demonstrated very unique gate-responses that cannot be found in conventional semiconducting devices, based on which we were able to perform detailed investigation into the electronic band alignment of the 2DEG devices and obtain the valence band offset at the heterointerface.

摘要

利用电解质门控环境中的扫描光电电流显微镜(SPCM)研究了在 AlO/SrTiO 异质界面形成二维电子气(2DEG)时的能带排列。我们使用聚焦的紫外激光源对 SrTiO 层进行带隙以上的照明,产生的电子-空穴对通过向金属电极迁移来贡献光电电流。在零栅偏压下,裸 SrTiO 器件的 SPCM 信号的极性显示出典型的 p 型行为,其中光生电子被电极收集。相比之下,2DEG 器件的 SPCM 极性表明空穴载流子被金属电极收集。仔细的输运测量表明,2DEG 器件的栅极依赖电导表现出 n 型开关行为。更重要的是,2DEG 器件中的 SPCM 信号表现出非常独特的栅极响应,这在传统半导体器件中是找不到的,基于这些响应,我们能够对 2DEG 器件的电子能带排列进行详细研究,并获得异质界面处的价带偏移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/705e/5476647/fe02d0dda979/41598_2017_4265_Fig1_HTML.jpg

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