English

A magnetic Impurity in a Weyl semimetal

Strongly Correlated Electrons 2015-11-18 v2

Abstract

We utilize the variational method to study the Kondo screening of a spin-1/21/2 magnetic impurity in a three-dimensional (3D) Weyl semimetal with two Weyl nodes along the kzk_z-axis. The model reduces to a 3D Dirac semimetal when the separation of the two Weyl nodes vanishes. When the chemical potential lies at the nodal point, μ=0\mu=0, the impurity spin is screened only if the coupling between the impurity and the conduction electron exceeds a critical value. For finite but small μ\mu, the impurity spin is weakly bound due to the low density of state, which is proportional to μ2\mu^2, contrary to that in a 2D Dirac metal such as graphene and 2D helical metal where the density of states is proportional to μ|\mu|. The spin-spin correlation function Juv(r)J_{uv}(\mathbf{r}) between the spin vv-component of the magnetic impurity at the origin and the spin uu-component of a conduction electron at spatial point r\mathbf{r}, is found to be strongly anisotropic due to the spin-orbit coupling, and it decays in the power-law. The main difference of the Kondo screening in 3D Weyl semimetals and in Dirac semimetals is in the spin xx- (yy-) component of the correlation function in the spatial direction of the zz-axis.

Keywords

Cite

@article{arxiv.1509.05180,
  title  = {A magnetic Impurity in a Weyl semimetal},
  author = {Jin-Hua Sun and Dong-Hui Xu and Fu-Chun Zhang and Yi Zhou},
  journal= {arXiv preprint arXiv:1509.05180},
  year   = {2015}
}

Comments

8 pages, 5 figures