论文标题
Majorana绑定的状态在基于铁的超导体上的涡旋晶格中
Majorana bound states in vortex lattices on iron-based superconductors
论文作者
论文摘要
Majorana准颗粒可能是作为拓扑绝缘子表面涡流中的零能量状态而产生的,该状态由常规超导体邻近。这样的系统在基于铁的超导体fete $ _ {0.55} $ se $ _ {0.45} $中发现了自然实现,该系统结合了散装$ s $ - 波与旋转的螺旋式狄拉克表面状态配对,因此构成了Majorana模式的成分,使Majorana模式的成分缺乏附加功能超大的超级尺寸。在这项工作中,我们根据磁场强度和涡旋晶格障碍等参数研究了此类材料中Majoraana涡流模式和晶格的出现。一个简单的2D平方晶格模型使我们能够捕获基础材料系统的基本物理。为了解决在实际系统中发生的无序涡旋晶格的问题,我们采用了单量规变换的技术,我们对其进行了修改,以便在具有周期性边界条件的系统中使用。这种方法使我们能够使用比其他可访问的更大的涡旋晶格,并成功地复制了fete $ _ {0.55} $ se $ _ {0.45} $平台的Majorana Vortex绑定状态的几个实验性观察。最后,它可能与简单无序的主要晶格模型有关,该模型应有助于进一步研究相互作用的作用以及朝向拓扑量子计算。
Majorana quasi-particles may arise as zero-energy bound states in vortices on the surface of a topological insulator that is proximitized by a conventional superconductor. Such a system finds its natural realization in the iron-based superconductor FeTe$_{0.55}$Se$_{0.45}$ that combines bulk $s$-wave pairing with spin helical Dirac surface states, and which thus comprises the ingredients for Majorana modes in absence of an additional proximitizing superconductor. In this work, we investigate the emergence of Majorana vortex modes and lattices in such materials depending on parameters like the magnetic field strength and vortex lattice disorder. A simple 2D square lattice model here allows us to capture the basic physics of the underlying materials system. To address the problem of disordered vortex lattice, which occurs in real systems, we adopt the technique of the singular gauge transformation which we modify such that it can be used in a system with periodic boundary conditions. This approach allows us to go to larger vortex lattices than otherwise accessible, and is successful in replicating several experimental observations of Majorana vortex bound states in the FeTe$_{0.55}$Se$_{0.45}$ platform. Finally it can be related to a simple disordered Majorana lattice model that should be useful for further investigations on the role of interactions, and towards topological quantum computation.