论文标题
Weyl-Semimetal培养基的手性过滤
Chiral filtration of light by Weyl-semimetal medium
论文作者
论文摘要
最近讨论的拓扑材料Weyl-semitals(WSS)结合了两者:高电子迁移率与石墨烯相当和对狄拉克点的独特拓扑保护。我们提出了与电磁场通过WSS传播有关的新型结果。据预测,正常入射的极化电磁波(EMW)通过WS的传播很大程度上取决于极化相对于回旋矢量$ \ mathbf {g} $的方向。后者与矢量参数$ \ mathbf {b} $有关,该$ \ mathbf {b} $表示在第一个布里群区域中相反手性的Weyl节点之间的分离。通过更改事件EMW的极化,相对于GyRation Vector $ \ Mathbf {g} $,系统将通过各向同性介电向介质进行过渡,并具有Kerr-or-Faraday样旋转的偏振,并最终带有手势选择性电磁场。结果表明,WSS可以用作极化过滤器。
Recently discussed topological materials Weyl-semimetals (WSs) combine both: high electron mobility comparable with graphene and unique topological protection of Dirac points. We present novel results related to electromagnetic field propagation through WSs. It is predicted that transmission of the normally incident polarized electromagnetic wave (EMW) through the WS strongly depends on the orientation of polarization with respect to a gyration vector $\mathbf{g}$. The latter is related to the vector-parameter $\mathbf{b}$, which represents the separation between the Weyl nodes of opposite chirality in the first Brillouin zone. By changing the polarization of the incident EMW with respect to the gyration vector $\mathbf{g}$ the system undergoes the transition from the isotropic dielectric to the medium with Kerr- or Faraday-like rotation of polarization and finally to the system with chiral selective electromagnetic field. It is shown that WSs can be applied as the polarization filters.