Winding numbers of nodal points in Fe-based superconductors
arXiv:1712.08668 · doi:10.1103/PhysRevB.97.094501
Abstract
We analyze the nodal points in multi-orbital Fe-based superconductors from a topological perspective. We consider the gap structure with accidental nodes, and the -wave gap with nodes along the symmetry directions. In both cases, the nodal points can be moved by varying an external parameter, e.g., a degree of inter-pocket pairing. Eventually, the nodes merge and annihilate via a Lifshitz-type transition. We discuss the Lifshitz transition in Fe-based superconductors from a topological point of view. We show, both analytically and numerically, that the merging nodal points have winding numbers of opposite sign. This is consistent with the general reasoning that the total winding number is a conserved quantity in the Lifshitz transition.
9 pages, 9 figures, submitted to PRB
References in corpus (10)
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Magnetic Order versus superconductivity in the Iron-based layered La(O1-xFx)FeAs systems
- Phase transition between the quantum spin Hall and insulator phases in 3D: emergence of a topological gapless phase
- d-wave pairing from spin fluctuations in the KxFe{2-y}Se2 superconductors
- Superconductivity and spin-density-waves in multi-band metals
- Universal phase diagrams for the quantum spin Hall systems
- Importance of Fermi surface topology for high temperature superconductivity in electron-doped iron arsenic superconductors
- Inter-pocket pairing and gap symmetry in Fe-based superconductors with only electron pockets
- Orbital selective pairing and superconductivity in iron selenides
- Displacement and annihilation of Dirac gap-nodes in d-wave iron-based superconductors