English

Higher-order Weyl superconductors with anisotropic Weyl-point connectivity

Mesoscale and Nanoscale Physics 2021-05-26 v1 Strongly Correlated Electrons Superconductivity

Abstract

Weyl superconductors feature Weyl points at zero energy in the three-dimensional (3D) Brillouin zone and arc states that connect the projections of these Weyl points on the surface. We report that higher-order Weyl superconductors can be realized in odd-parity topological superconductors with time-reversal symmetry being broken by periodic driving. Different from conventional Weyl points, the higher-order Weyl points in the bulk separate 2D first- and second-order topological phases, while on the surface, their projections are connected not only by conventional surface Majorana arcs, but also by hinge Majorana arcs. We show that the Weyl-point connectivity via Majorana arcs is largely enriched by the underlying higher-order topology and becomes anisotropic with respect to surface orientations. We identify the anisotropic Weyl-point connectivity as a characteristic feature of higher-order Weyl materials. As each 2D subsystem can be singled out by fixing the periodic driving, we propose how the Majorana zero modes in the 2D higher-order topological phases can be detected and manipulated in experiments.

Keywords

Cite

@article{arxiv.2009.11419,
  title  = {Higher-order Weyl superconductors with anisotropic Weyl-point connectivity},
  author = {W. B. Rui and Song-Bo Zhang and Moritz M. Hirschmann and Andreas P. Schnyder and Björn Trauzettel and Z. D. Wang},
  journal= {arXiv preprint arXiv:2009.11419},
  year   = {2021}
}

Comments

7 pages, 3 figures