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首页> 外文期刊>Nature Communications >Engineering two-dimensional superconductivity and Rashba spin-orbit coupling in LaAlO3/SrTiO3 quantum wells by selective orbital occupancy
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Engineering two-dimensional superconductivity and Rashba spin-orbit coupling in LaAlO3/SrTiO3 quantum wells by selective orbital occupancy

机译:通过选择性轨道占据在LaAlO3 / SrTiO3量子阱中工程二维超导和Rashba自旋轨道耦合

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摘要

The discovery of two-dimensional electron gases (2DEGs) at oxide interfaces-involving electrons in narrow d-bands-has broken new ground, enabling the access to correlated states that are unreachable in conventional semiconductors based on s-and p-electrons. There is a growing consensus that emerging properties at these novel quantum wells-such as 2D superconductivity and magnetism-are intimately connected to specific orbital symmetries in the 2DEG sub-band structure. Here we show that crystal orientation allows selective orbital occupancy, disclosing unprecedented ways to tailor the 2DEG properties. By carrying out electrostatic gating experiments in LaAlO3/SrTiO3 wells of different crystal orientations, we show that the spatial extension and anisotropy of the 2D superconductivity and the Rashba spin-orbit field can be largely modulated by controlling the 2DEG sub-band filling. Such an orientational tuning expands the possibilities for electronic engineering of 2DEGs at LaAlO3/SrTiO3 interfaces.
机译:在氧化物界面上发现二维电子气(2DEGs)涉及窄d波段的电子,这开辟了新局面,使人们能够访问基于s电子和p电子的常规半导体所无法达到的相关态。越来越多的共识是,这些新型量子阱的新兴性质(例如2D超导性和磁性)与2DEG子带结构中的特定轨道对称性紧密相关。在这里,我们表明晶体取向允许选择性的轨道占据,揭示了量身定制2DEG属性的空前方法。通过在不同晶体取向的LaAlO3 / SrTiO3孔中进行静电选通实验,我们表明,通过控制2DEG子带填充,可以极大地调节2D超导和Rashba自旋轨道场的空间扩展和各向异性。这种定向调整扩展了在LaAlO3 / SrTiO3界面进行2DEG电子工程的可能性。

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