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Theory of $d + id$ Second-Order Topological Superconductors

Superconductivity 2023-10-30 v1 Strongly Correlated Electrons Quantum Physics

Abstract

Topological superconductors are a class of unconventional superconducting materials featuring sub-gap zero-energy Majorana bound modes that hold promise as a building block for topological quantum computing. In this work, we study the realization of second-order topology that defines anomalous gapless boundary modes in a two-orbital superconductor with spin-orbital couplings. We reveal a time-reversal symmetry-breaking second-order topological superconducting phase with d+idd+id-wave orbital-dependent paring without the need for the external magnetic field. Remarkably, this orbital-active dd-wave paring gives rise to anomalous zero-energy Majorana corner modes, which is in contrast to conventional chiral dd-wave pairing, accommodating one-dimensional Majorana edge modes. Our work not only reveals a unique mechanism of time-reversal symmetry breaking second-order topological superconductors but also bridges the gap between second-order topology and orbital-dependent pairings.

Keywords

Cite

@article{arxiv.2310.17992,
  title  = {Theory of $d + id$ Second-Order Topological Superconductors},
  author = {Zi-Ming Wang and Meng Zeng and Chen Lu and Da-Shuai Ma and Rui-Xing Zhang and Lun-Hui Hu and Dong-Hui Xu},
  journal= {arXiv preprint arXiv:2310.17992},
  year   = {2023}
}

Comments

5+ pages, 5 figures