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  • Letter

Dipole-obstructed Cooper pairing: Theory and application to j=32 superconductors

Penghao Zhu1,* and Rui-Xing Zhang2,3,†

  • *Contact author: zhu.3711@osu.edu
  • †Contact author: ruixing@utk.edu

Phys. Rev. B 111, L081107 – Published 12 February, 2025

DOI: https://doi.org/10.1103/PhysRevB.111.L081107

Abstract

Like electrons, Cooper pairs can carry a monopole charge if the pairing electrons come from two or more Fermi surfaces with different Chern numbers. In such an instance, a superconductor is necessarily nodal due to an inherent topological pairing obstruction. In this work, we show that a similar obstruction is also possible when there is only one Fermi surface involved in the pairing process. By developing a Chern-vorticity theorem, we have identified a class of Fermi surfaces with a quantized dipolar Berry flux pattern, where all intra-Fermi-surface Cooper pairings are “dipole obstructed” and nodal. As a real-world application, we find that the dipole obstruction plays a crucial role in stabilizing the superconducting nodal structure for j=32 half-Heusler compounds.

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