Local nodal Cooper pairs in multiorbital systems
Abstract
We show the emergence of a new class of superconductivity in multiorbital systems, focusing on non-Kramers f states. The Cooper pairs in this class of superconductivity mainly consist of local pairs with the same symmetry as the local f ground states. When the local ground state is an anisotropic representation, the superconducting gap has nodes on the Fermi surface. This nodal superconductivity is mediated by the strong onsite inter-orbital attractions as a consequence of negative- physics generalized to multiorbital systems. We show that this is indeed realized in a simple two-orbital model with antiferro Hund's coupling and enhanced inter-orbital interaction derived via a systematic local down folding. Finally, we briefly discuss superconductivity in Pr-1-2-20 compounds, UBe, and PrOsSb in view of the present mechanism.
Keywords
Cite
@article{arxiv.1708.01900,
title = {Local nodal Cooper pairs in multiorbital systems},
author = {Kazumasa Hattori and Takuya Nomoto and Takashi Hotta and Hiroaki Ikeda},
journal= {arXiv preprint arXiv:1708.01900},
year = {2017}
}
Comments
5 pages, 3 figures, and 1 table, references added