Euler Obstructed Cooper Pairing: Nodal Superconductivity and Hinge Majorana Zero Modes
arXiv:2109.02685 · doi:10.1103/PhysRevB.105.104515
Abstract
Since the proposal of monopole Cooper pairing in [Phys. Rev. Lett. 120, 067003 (2018)], considerable research efforts have been dedicated to the study of Cooper pairing order parameters constrained (or obstructed) by the nontrivial normal-state band topology at Fermi surfaces in 3D systems. In the current work, we generalize the topologically obstructed pairings between Chern states (like the monopole Cooper pairing) by proposing Euler obstructed Cooper pairing in 3D systems. The Euler obstructed Cooper pairing widely exists between two Fermi surfaces with nontrivial band topology characterized by nonzero Euler numbers; such Fermi surfaces can exist in 3D PT-protected spinless-Dirac/nodal-line semimetals with negligible spin-orbit coupling, where PT is the space-time inversion symmetry. An Euler obstructed pairing channel must have pairing nodes on the pairing-relevant Fermi surfaces, and the total winding number of the pairing nodes is determined by the sum or difference of the Euler numbers on the Fermi surfaces. In particular, we find that when the normal state is time-reversal invariant and the pairing is weak, a sufficiently-dominant Euler obstructed pairing channel with zero total momentum leads to nodal superconductivity. If the Fermi surface splitting is small, the resultant nodal superconductor hosts hinge Majorana zero modes. The possible dominance of the Euler obstructed pairing channel near the superconducting transition and the robustness of the hinge Majorana zero modes against disorder are explicitly demonstrated using effective or tight-binding models. Our work presents the first class of higher-order nodal superconductivity originating from the topologically obstructed Cooper pairing.
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References in corpus (12)
- Topological Semimetals
- Wannier representation of Z_2 topological insulators
- Exponential localization of Wannier functions in insulators
- Observation of a Majorana zero mode in a topologically protected edge channel
- Topological Euler class as a dynamical observable in optical lattices
- Symmetric Real Dirac Fermions and Semimetals
- Geometric approach to fragile topology beyond symmetry indicators
- Doping-induced superconductivity in the topological semimetal Mo5Si3
- Bulk topology of line-nodal structures protected by space group symmetries in class AI
- Topological insulators and higher-order topological insulators from gauge-invariant 1D lines
- Inherited topological superconductivity in two-dimensional Dirac semimetals
- Geometric Superconductivity in 3D Hofstadter Butterfly
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- Electron-K-Phonon Interaction In Twisted Bilayer Graphene
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- Electron phonon coupling in the topological heavy fermion model of twisted bilayer graphene
- Corner Charge Fluctuation as an Observable for Quantum Geometry and Entanglement in Two-dimensional Insulators
- Textured Exciton Insulators
- Classification of time-reversal symmetric topological superconducting phases for conventional pairing symmetries
- Nodal Nematic Superconductivity in Multiple-Flat-Band Land
- Optical signatures of Euler superconductors
- Coulomb-driven band unflattening suppresses -phonon pairing in moiré graphene
- Mean-field Modelling of Moiré Materials: A User's Guide with Selected Applications to Twisted Bilayer Graphene
- Euler band topology in superfluids and superconductors
- Fermi-surface diagnosis for topological superconductivity with -wave-like pairing symmetries