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首页> 外文期刊>Science Advances >Nonreciprocal transport in gate-induced polar superconductor SrTiO3
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Nonreciprocal transport in gate-induced polar superconductor SrTiO3

机译:栅极诱导极超导体SRTIO3中的非探测运输

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摘要

Polar conductors/superconductors with Rashba-type spin-orbit interaction are potential material platforms for quantum transport and spintronic functionalities. One of their inherent properties is the nonreciprocal transport, where the rightward and leftward currents become inequivalent, reflecting spatial inversion/time-reversal symmetry breaking. Such a rectification effect originating from the polar symmetry has been recently observed at interfaces or bulk Rashba semiconductors, while its mechanism in a polar superconductor remains elusive. Here, we report the nonreciprocal transport in gate-induced two-dimensional superconductor SrTiOsub3/sub, which is a Rashba superconductor candidate. In addition to the gigantic enhancement of nonreciprocal signals in the superconducting fluctuation region, we found kink and sharp peak structures around critical temperatures, which reflect the crossover behavior from the paraconductivity origin to the vortex origin, based on a microscopic theory. The present result proves that the nonreciprocal transport is a powerful tool for investigating the interfacial/polar superconductors without inversion symmetry, where rich exotic features are theoretically prognosticated.
机译:具有Rashba型自旋轨道交互的极导体/超导体是量子传输和旋转函数的潜在材料平台。其固有属性之一是非透视传输,在那里向右和向左电流变得不当,反映了空间反转/时间反转对称性断裂。最近在界面或散装Rashba半导体中观察到来自极性对称性的这种整流效果,而其在极性超导体中的机制仍然难以捉摸。在这里,我们在栅极诱导的二维超导体SRTIO 3 中报告非探测器传输,其是Rashba超导体候选者。除了超导波动区域中的非传导信号的巨大增强外,我们发现围绕临界温度的扭结和尖锐峰结构,这基于微观理论,反映了从导搏动率的转换行为到涡流起源。本结果证明,非探测器是一种强大的工具,用于在没有反转对称的情况下研究界面/极超导体,其中富有的异国特征是理论上预测的。

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