Spin-orbit coupling, minimal model and potential Cooper-pairing from repulsion in BiS-superconductors
arXiv:1711.05454 · doi:10.1088/1367-2630/aaaf87
Abstract
We develop the realistic minimal electronic model for recently discovered BiS superconductors including the spin-orbit coupling based on a first-principles band structure calculations. Due to strong spin-orbit coupling, characteristic for the Bi-based systems, the tight-binding low-energy model necessarily includes , , and orbitals. We analyze a potential Cooper-pairing instability from purely repulsive interaction for the moderate electronic correlations using the so-called leading angular harmonics approximation (LAHA). For small and intermediate doping concentrations we find the dominant instabilities to be -wave, and -wave symmetries, respectively. At the same time, in the absence of the sizable spin fluctuations the intra and interband Coulomb repulsion are of the same strength, which yields the strongly anisotropic behaviour of the superconducting gaps on the Fermi surface in agreement with recent ARPES findings. In addition, we find that the Fermi surface topology for BiS layered systems at large electron doping can resembles the doped iron-based pnictide superconductors with electron and hole Fermi surfaces with sufficient nesting between them. This could provide further boost to increase in these systems.
10 pages, 3 figures
References in corpus (10)
- Superconductivity Appears in the Vicinity of an Insulating-Like Behavior in CeOFBiS
- Minimal electronic models for superconducting BiS layers
- Ferroelectric Soft Phonons, Charge Density Wave Instability and Strong Electron-Phonon Coupling in BiS2-Layered Superconductors
- Superconductivity induced by La doping in Sr1-xLaxFBiS2 system
- Evolution of superconductivity in LaO1-xFxBiS2 prepared by high pressure technique
- RPA Analysis of a Two-orbital Model for the BiS2-based Superconductors
- Unconventional superconductivity in the BiS-based layered superconductor NdOFBiS
- Fermi surfaces and orbital polarization in superconducting CeOFBiS revealed by angle-resolved photoemission spectroscopy
- Weak phonon-mediated pairing in BiS superconductor from first principles
- Indication of unconventional superconductivity in layered bismuth chalcogenide superconductor LaO0.6F0.4Bi(S,Se)2 revealed by Se isotope effect