论文标题

四极自旋极化为二阶拓扑超导体的签名

Quadrupole spin polarization as signature of second-order topological superconductors

论文作者

Plekhanov, Kirill, Müller, Niclas, Volpez, Yanick, Kennes, Dante M., Schoeller, Herbert, Loss, Daniel, Klinovaja, Jelena

论文摘要

我们研究了理论上二阶拓扑超导体,其特征在于存在零能量的主要角度状态。我们在系统边缘上发现了四极旋转极化,该偏振提供了一个引人注目的签名以识别拓扑阶段,从而基于Majoraana角状态引起的基于零偏置电导峰的标准方法补充标准方法。我们考虑两种不同类别的二阶拓扑超导体,具有破裂的时间反向对称性,并表明这两个类别的特征是自旋极化的四极结构,随着系统穿过拓扑相变的方式消失。可以使用自旋极化扫描隧道显微镜实验访问此功能。我们在分析和数值上研究了托管二阶拓扑阶段的不同模型,并且使用Keldysh技术,我们提供了通过扫描尖端探测的自旋极电流的数值模拟。

We study theoretically second-order topological superconductors characterized by the presence of pairs of zero-energy Majorana corner states. We uncover a quadrupole spin polarization at the system edges that provides a striking signature to identify topological phases, thereby complementing standard approaches based on zero-bias conductance peaks due to Majorana corner states. We consider two different classes of second-order topological superconductors with broken time-reversal symmetry and show that both classes are characterized by a quadrupolar structure of the spin polarization that disappears as the system passes through the topological phase transition. This feature can be accessed experimentally using spin-polarized scanning tunneling microscopes. We study different models hosting second-order topological phases, both analytically and numerically, and using Keldysh techniques we provide numerical simulations of the spin-polarized currents probed by scanning tips.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源