论文标题
Majorana绑定的状态具有手性磁纹理
Majorana bound states with chiral magnetic textures
论文作者
论文摘要
本教程的目的是在具有磁性纹理的冷凝物质系统中对主要被称为Majorana绑定状态(MB)的Majorana Fermions的实现进行教学介绍。我们首先考虑了“无旋转”费米子的Kitaev链模型,并展示了由于相互作用而在链端如何出现两个“半”费米子。通过考虑该模型及其二维概括,我们强调了拓扑超导性与MB的可能实现之间的复杂关系。我们进一步讨论如何在更多的物理系统中(例如,使用自旋摩托锁定)实现“无旋转”费米子。接下来,我们演示如何使用磁纹理来诱导合成或虚拟的自旋轨道相互作用,从而稳定MBS。我们描述了一种适用于任意纹理并将其应用于天空的通用方法。我们展示了如何通过细长的天空,某些高阶天空和天空链来稳定MB。我们还讨论了如何使用稳定在磁性天空上的MBS进行编织操作。该教程针对研究生级的学生。
The aim of this Tutorial is to give a pedagogical introduction into realizations of Majorana fermions, usually termed as Majorana bound states (MBS), in condensed matter systems with magnetic textures. We begin by considering the Kitaev chain model of 'spinless' fermions and show how two 'half' fermions can appear at chain ends due to interactions. By considering this model and its two-dimensional generalization, we emphasize intricate relation between topological superconductivity and possible realizations of MBS. We further discuss how 'spinless' fermions can be realized in more physical systems, e.g., by employing the spin-momentum locking. Next, we demonstrate how magnetic textures can be used to induce synthetic or fictitious spin-orbit interactions, and, thus, stabilize MBS. We describe a general approach that works for arbitrary textures and apply it to skyrmions. We show how MBS can be stabilized by elongated skyrmions, certain higher order skyrmions, and chains of skyrmions. We also discuss how braiding operations can be performed with MBS stabilized on magnetic skyrmions. This Tutorial is aimed at students at graduate level.