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Liquid-Gated High Mobility and Quantum Oscillation of the Two-Dimensional Electron Gas at an Oxide Interface

机译:氧化物界面上二维电子气的液控高迁移率和量子振荡

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Electric field effect in electronic double layer transistor (EDLT) configuration with ionic liquids as the dielectric materials is a powerful means of exploring various properties in different materials. Here, we demonstrate the modulation of electrical transport properties and extremely high mobility of two-dimensional electron gas at LaAlO3/SrTiO3 (LAO/STO) interface through ionic liquid-assisted electric field effect. With a change of the gate voltages, the depletion of charge carrier and the resultant enhancement of electron mobility up to 19 380 cm(2)/(V s) are realized, leading to quantum oscillations of the conductivity at the LAO/STO interface. The present results suggest that high-mobility oxide interfaces, which exhibit quantum phenomena, could be obtained by ionic liquid-assisted field effect.
机译:使用离子液体作为介电材料的电子双层晶体管(EDLT)配置中的电场效应是探索不同材料中各种特性的有力手段。在这里,我们演示了通过离子液体辅助电场效应对LaAlO3 / SrTiO3(LAO / STO)界面上的二维电子气的电输运特性和极高迁移率的调制。随着栅极电压的变化,实现了电荷载流子的耗尽以及由此产生的电子迁移率的提高,最高可达19 380 cm(2)/(V s),从而导致LAO / STO界面处的电导率发生量子振荡。目前的结果表明,可以通过离子液体辅助场效应获得表现出量子现象的高迁移率氧化物界面。

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