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Field-effect control of superconductivity and Rashba spin-orbit coupling in top-gated LaAlO3/SrTiO3 devices

机译:顶级LaAlO 3 / SrTiO 3 器件中超导性和Rashba自旋轨道耦合的场效应控制

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The recent development in the fabrication of artificial oxide heterostructures opens new avenues in the field of quantum materials by enabling the manipulation of the charge, spin and orbital degrees of freedom. In this context, the discovery of two-dimensional electron gases (2-DEGs) at LaAlO3/SrTiO3 interfaces, which exhibit both superconductivity and strong Rashba spin-orbit coupling (SOC), represents a major breakthrough. Here, we report on the realisation of a field-effect LaAlO3/SrTiO3 device, whose physical properties, including superconductivity and SOC, can be tuned over a wide range by a top-gate voltage. We derive a phase diagram, which emphasises a field-effect-induced superconductor-to-insulator quantum phase transition. Magneto-transport measurements show that the Rashba coupling constant increases linearly with the interfacial electric field. Our results pave the way for the realisation of mesoscopic devices, where these two properties can be manipulated on a local scale by means of top-gates.
机译:人造氧化物异质结构的制造中的最新进展通过控制电荷,自旋和轨道自由度,为量子材料领域开辟了新途径。在此背景下,在LaAlO 3 / SrTiO 3 界面处发现了二维电子气(2-DEG),该界面既具有超导性又具有强Rashba自旋轨道耦合(SOC),代表了一项重大突破。在这里,我们报告了一种场效应LaAlO 3 / SrTiO 3 器件的实现,该器件的物理特性(包括超导性和SOC)可以在很宽的范围内调节顶栅电压。我们得出一个相位图,该图强调了场效应感应的超导体到绝缘体的量子相变。磁传输测量结果表明,拉什巴耦合常数随界面电场线性增加。我们的结果为介观设备的实现铺平了道路,在介观设备中,这两个属性可以通过顶门在局部范围内进行操作。

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