English

Spontaneous surface current in multi-component cubic superconductors with time-reversal symmetry breaking

Superconductivity 2018-07-17 v2 Mesoscale and Nanoscale Physics

Abstract

In this work we present a comprehensive study of the spontaneous currents in time-reversal symmetry breaking (TRSB) multi-component superconductors with cubic crystalline symmetry. We argue, not limiting to cubic lattices, that spontaneous current on certain high-symmetry surfaces can exist only if the TRSB pairing simultaneously breaks a certain pair of mirror symmetries. This is shown to have exact correspondence with the Gingzburg-Landau (GL) theory and is verified by numerical Bogoliubov de-Gennes (BdG) calculations. In the course we extend the BdG to include effects of gap anisotropy and surface disorder, both of which could lead to a much suppressed current. The GL theory has been known to describe well the spontaneous current. However, we highlight a special case where it becomes less adequate, and show that a refined effective theory for low temperatures is needed. These results could shed light on the phenomenology of cubic superconductors such as U1x_{1-x}Thx_xBe13_{13}, the filled skutterudites PrOs4_4Sb12_{12}, PrPt4_4Ge12_{12} and related compounds.

Keywords

Cite

@article{arxiv.1804.07877,
  title  = {Spontaneous surface current in multi-component cubic superconductors with time-reversal symmetry breaking},
  author = {Jia-Long Zhang and Wen Huang and Dao-Xin Yao},
  journal= {arXiv preprint arXiv:1804.07877},
  year   = {2018}
}

Comments

7.5 pages + 6 figures