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Theory of Kerr and Faraday rotations and linear dichroism in Topological Weyl Semimetals

机译:拓扑Weyl半金属的Kerr和Faraday旋转理论与线性二色性。

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摘要

We consider the electromagnetic response of a topological Weyl semimetal (TWS) with a pair of Weyl nodes in the bulk and corresponding Fermi arcs in the surface Brillouin zone. We compute the frequency-dependent complex conductivities σαβ(ω) and also take into account the modification of Maxwell equations by the topological θ-term to obtain the Kerr and Faraday rotations in a variety of geometries. For TWS films thinner than the wavelength, the Kerr and Faraday rotations, determined by the separation between Weyl nodes, are significantly larger than in topological insulators. In thicker films, the Kerr and Faraday angles can be enhanced by choice of film thickness and substrate refractive index. We show that, for radiation incident on a surface with Fermi arcs, there is no Kerr or Faraday rotation but the electric field develops a longitudinal component inside the TWS, and there is linear dichroism signal. Our results have implications for probing the TWS phase in various experimental systems.
机译:我们考虑了拓扑Weyl半金属(TWS)的电磁响应,该Weyl半金属在本体中具有一对Weyl节点,在表面布里渊区中具有对应的费米弧。我们计算与频率相关的复电导率σαβ(ω),并且还考虑了通过拓扑θ项对Maxwell方程进行的修改,以获得各种几何形状中的Kerr和Faraday旋转。对于比波长更薄的TWS薄膜,由Weyl节点之间的间距确定的Kerr和Faraday旋转明显大于拓扑绝缘体。在较厚的薄膜中,可以通过选择薄膜厚度和基材折射率来增加克尔角和法拉第角。我们表明,对于辐射入射到具有费米弧的表面上的辐射,没有Kerr或法拉第旋转,但是电场在TWS内部形成了纵向分量,并且存在线性二向色性信号。我们的结果对探索各种实验系统中的TWS阶段具有启示意义。

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