论文标题
拓扑绝缘体中接近诱导的奇数超导性
Proximity-Induced Odd-Frequency Superconductivity in a Topological Insulator
论文作者
论文摘要
在拓扑绝缘子(TI)和常规超导体(SC)之间的界面上,预测超导性会发生巨大变化并显示出新颖的相关性。特别是,TI中的$ s $ - 波SC的诱导超导性可以使用$ p $ - 波组件开发订单参数。在这里,我们提供了实验证据,表明在原型Ti的薄层中,出乎意料的接近诱导的新型超导状态,Bi $ _2 $ SE $ _3 $,与NB相连。从NB的超导过渡温度下方的深度分辨磁场测量值中,我们观察到BI $ _2 $ _2 $ SE $ _3 $中磁场的局部增强,超过了外部应用场,从而支持存在固有的磁磁Meissner效应,这是由奇数 - 频率 - 频率增压超级超级构造的状态引起的。我们的实验结果通过理论计算得到补充,该计算支持延伸到Ti的界面上这种成分的外观。该状态在拓扑上与其起源的常规Bardeen-Cooper-Schrieffer状态不同。据我们所知,这些发现首先观察到Ti中的散装奇数超导性。因此,我们重申Ti-SC界面的潜力是产生新型超导状态的多功能平台。
At an interface between a topological insulator (TI) and a conventional superconductor (SC), superconductivity has been predicted to change dramatically and exhibit novel correlations. In particular, the induced superconductivity by an $s$-wave SC in a TI can develop an order parameter with a $p$-wave component. Here we present experimental evidence for an unexpected proximity-induced novel superconducting state in a thin layer of the prototypical TI, Bi$_2$Se$_3$, proximity coupled to Nb. From depth-resolved magnetic field measurements below the superconducting transition temperature of Nb, we observe a local enhancement of the magnetic field in Bi$_2$Se$_3$ that exceeds the externally applied field, thus supporting the existence of an intrinsic paramagnetic Meissner effect arising from an odd-frequency superconducting state. Our experimental results are complemented by theoretical calculations supporting the appearance of such a component at the interface which extends into the TI. This state is topologically distinct from the conventional Bardeen-Cooper-Schrieffer state it originates from. To the best of our knowledge, these findings present a first observation of bulk odd-frequency superconductivity in a TI. We thus reaffirm the potential of the TI-SC interface as a versatile platform to produce novel superconducting states.