Superconducting gap anisotropy sensitive to nematic domains in FeSe.
Ontology highlight
ABSTRACT: The structure of the superconducting gap in unconventional superconductors holds a key to understand the momentum-dependent pairing interactions. In superconducting FeSe, there have been controversial results reporting nodal and nodeless gap structures, raising a fundamental issue of pairing mechanisms of iron-based superconductivity. Here, by utilizing polarization-dependent laser-excited angle-resolved photoemission spectroscopy, we report a detailed momentum dependence of the gap in single- and multi-domain regions of orthorhombic FeSe crystals. We confirm that the superconducting gap has a twofold in-plane anisotropy, associated with the nematicity due to orbital ordering. In twinned regions, we clearly find finite gap minima near the vertices of the major axis of the elliptical zone-c
SUBMITTER: Hashimoto T
PROVIDER: S-EPMC5773685 | biostudies-literature | 2018 Jan
REPOSITORIES: biostudies-literature
ACCESS DATA