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Inter-orbital spin-triplet superconductivity from altermagnetic fluctuations

Strongly Correlated Electrons 2025-10-23 v1 Superconductivity

Abstract

Altermagnetic (AM) fluctuations are a new class of collinear spin fluctuations whose role in mediating superconductivity faces a fundamental tension: their Γ\Gamma-point peak favors intra-orbital spin-triplet pairing, while their spin compensation favors inter-orbital singlets. Here, we demonstrate that inversion-symmetry-broken AM fluctuations generically resolve this competition in favor of spin-triplet pairing. As a proof of concept, we study a minimal two-orbital model with two van Hove singularities. The broken inversion symmetry induces momentum-orbital locking: the same orbital dominates at opposite momenta, enhancing the triplet channel. Crucially, a subdominant fluctuation channel arising from inter-van-Hove nesting provides an internal Josephson coupling that locks the phase difference between triplet pairs on different orbitals. We find this coupling changes sign (++ to -) upon a crossover from AM-dominant to ferromagnetic-dominant fluctuations. The resulting π\pi-phase difference manifests as a τz\tau_z-type order parameter, ck,1ck,1ck,2ck,2c_{k,1\uparrow}c_{-k,1\uparrow} - c_{k,2\uparrow}c_{-k,2\uparrow}. Although intra-orbital in the original basis, its orbital-nontrivial character, as manifested by its equivalence to inter-orbital pairing under rotation, defines a general \textit{inter-orbital spin-triplet superconductivity}. This state is distinct from the τ0\tau_0-triplet pairing mediated by ferromagnetic fluctuations, as evidenced by the canceled intra-orbital supercurrent in a Josephson junction between them.

Keywords

Cite

@article{arxiv.2510.19083,
  title  = {Inter-orbital spin-triplet superconductivity from altermagnetic fluctuations},
  author = {Chen Lu and Chuang Li and Chao Cao and Huiqiu Yuan and Fu-Chun Zhang and Lun-Hui Hu},
  journal= {arXiv preprint arXiv:2510.19083},
  year   = {2025}
}

Comments

5 pages, 5 figures. Comments are welcome

R2 v1 2026-07-01T06:58:46.744Z