English

Ligand-mediated Origin of Altermagnetic Spin-Splitting

Materials Science 2026-05-21 v1 Strongly Correlated Electrons

Abstract

Altermagnets host spin-split electronic bands despite zero net magnetization, opening new routes for spintronics beyond conventional ferromagnets. Going beyond symmetry-based classifications, which specify allowed terms but not their hierarchy, here we use first-principles calculations and Wannier Hamiltonian engineering to uncover the microscopic bonding contributions of altermagnetic spin splitting in the gg-wave altermagnet Co1/4_{1/4}NbSe2_2. We show that the splitting is captured by a short-range tight-binding model, establishing its local origin. By selectively controlling hopping channels, we demonstrate that the dominant contribution arises not from direct magnetic-ion hopping, but from ligand-mediated hybridization that transfers anisotropy to itinerant states. This identifies ligand-assisted coupling as the key mechanism of altermagnetic spin splitting and provides a microscopic bridge between minimal models and symmetry guided first-principles material searches, enabling real-space design of altermagnetic functionality.

Keywords

Cite

@article{arxiv.2605.21284,
  title  = {Ligand-mediated Origin of Altermagnetic Spin-Splitting},
  author = {Luigi Camerano and Federico Bisti and Gianni Profeta},
  journal= {arXiv preprint arXiv:2605.21284},
  year   = {2026}
}

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8 pages