论文标题

氧化物 - 绝缘子/ktao $ _3 $接口及其起源的可调超导性

Tunable superconductivity at the oxide-insulator/KTaO$_3$ interface and its origin

论文作者

Liu, Changjiang, Zhou, Xianjing, Hong, Deshun, Fisher, Brandon, Zheng, Hong, Pearson, John, Jin, Dafei, Norman, Michael R, Bhattacharya, Anand

论文摘要

超导性是由库珀对电子对的凝结形成的。在非规定的超导体中创建库珀对的机制通常是难以捉摸的,因为将特定配对机制与超导状态的性质联系起来的实验性签名很少见。最近发现的超导氧化物绝缘子/ktao $ _3 $接口可能会提供有关其起源的线索。在这里,我们观察到超导过渡温度TC对载体密度n $ _ {2D} $的明显依赖性,用于在KTAO $ _3 $(111),(001)和(110)接口处形成的电子气体。对于KTAO $ _3 $(111)接口,在几乎一个数量级的范围内观察到TC对N $ _ {2D} $的显着线性依赖性。此外,我们对超导性对栅极电场依赖性的研究揭示了界面在介导超导性中的作用,这也允许在t = 2 K处进行超导导的可逆电转换。我们发现,超导对晶体学方向的极端敏感性可以通过合作互动(通过合作互动)来探索超导对晶体学的互动(均可通过相互作用)来探索,从而可以通过互动互动(互动)进行互动互动(和量子限制。这种机制也与Tc对n $ _ {2d} $的依赖性在ktao $ _3 $(111)接口上。我们的研究可能会阐明其他超导量子 - 帕拉氏菌中的配对机制。

Superconductivity forms out of the condensation of Cooper pairs of electrons. The mechanism by which Cooper pairs are created in non-conventional superconductors is often elusive because experimental signatures that connect a specific pairing mechanism to the properties of superconducting state are rare. The recently discovered superconducting oxide-insulator/KTaO$_3$ interface may offer clues about its origins. Here we observe distinct dependences of the superconducting transition temperature Tc on carrier density n$_{2D}$ for electron gases formed at KTaO$_3$ (111), (001) and (110) interfaces. For the KTaO$_3$ (111) interface, a remarkable linear dependence of Tc on n$_{2D}$ is observed over a range of nearly one order of magnitude. Further, our study of the dependence of superconductivity on gate electric fields reveals the role of the interface in mediating superconductivity, which also allows for a reversible electric switching of superconductivity at T = 2 K. We found that the extreme sensitivity of superconductivity to crystallographic orientation can be explained by Cooper pairing via inter-orbital interactions induced by the inversion-breaking transverse optical (TO1) phonons and quantum confinement. This mechanism is also consistent with the dependence of Tc on n$_{2D}$ at the KTaO$_3$ (111) interface. Our study may shed light on the pairing mechanism in other superconducting quantum-paraelectrics.

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