论文标题
在螺旋和环形磁铁杂种杂种的螺旋形和环形磁铁阶段中的主要模式
Majorana modes in emergent-wire phases of helical and cycloidal magnet-superconductor hybrids
论文作者
论文摘要
非共线性磁性为产生拓扑超导性带来了令人兴奋的可能性。在这里,我们专注于背景磁场中的磁性渗透杂种结构中的螺旋和环磁纹理。我们证明该系统可以进入拓扑阶段,该阶段可以理解为一组平行的拓扑电线。我们通过三种不同的方法深入探索并确认了这一想法:连续模型,基于磁性单位电池的紧密结合模型,以及有限的二维晶格上的对角线。这种拓扑状态的关键特征是在磁纹理中某些披露缺陷处的Majoraana结合状态存在。基于螺旋形或环形质地施加的$ C_2 $对称性,我们采用旋转不变的拓扑结晶超导体理论,以在脱节时获得Majorana Parity。此外,我们考虑了一个90度的Helimagnet域壁,该壁是由一串交替的脱节形成的。我们讨论所得的披露链如何融合到具有不同速度的两个手性模式。我们建议,手性磁铁和超导体的混合系统能够在各种空间构型中托管Majoragan模式,其潜在的纳米工程工程要比IN,例如半导体线。
Noncollinear magnetism opens exciting possibilities to generate topological superconductivity. Here, we focus on helical and cycloidal magnetic textures in magnet-superconductor hybrid structures in a background magnetic field. We demonstrate that this system can enter a topological phase which can be understood as a set of parallel topological wires. We explore and confirm this idea in depth with three different approaches: a continuum model, a tight-binding model based on the magnetic unit cell, and exact diagonalization on a finite two-dimensional lattice. The key signature of this topological state is the presence of Majorana bound states at certain disclination defects in the magnetic texture. Based on the $C_2$ symmetry imposed by the helical or cycloidal texture, we employ the theory of topological crystalline superconductors with rotation invariants to obtain the Majorana parity at disclinations. Furthermore, we consider a 90-degree helimagnet domain wall, which is formed by a string of alternating disclinations. We discuss how the resulting chain of disclination bound states hybridizes into two chiral modes with different velocities. We suggest that hybrid systems of chiral magnets and superconductors are capable of hosting Majorana modes in various spatial configurations with potentially far less nano-engineering than in, e.g., semiconductor wires.