Euler Obstructed Cooper Pairing: Nodal Superconductivity and Hinge Majorana Zero Modes
Jiabin Yu, Yu-An Chen, Sankar Das Sarma

TL;DR
This paper introduces Euler obstructed Cooper pairing in 3D systems, leading to nodal superconductivity with hinge Majorana zero modes, expanding the understanding of topologically constrained pairing mechanisms.
Contribution
It proposes a new class of topologically obstructed pairing based on Euler numbers, resulting in higher-order nodal superconductivity with Majorana modes.
Findings
Euler obstructed pairing exists in PT-protected semimetals.
Nodal superconductivity hosts hinge Majorana zero modes.
Robustness of Majorana modes against disorder is demonstrated.
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,…
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