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Light-Induced Even-Parity Unidirectional Spin Splitting in Coplanar Antiferromagnets

Materials Science 2026-01-08 v1 Mesoscale and Nanoscale Physics

Abstract

When a coplanar antiferromagnet (AFM) with xyxy-plane magnetic moments exhibits a spin-split band structure and unidirectional spin polarization along zz, the spin polarization is forced to be an odd function of momentum by the fundamental symmetry [Cˉ2zT][\bar{C}_{2z}\|\mathcal{T}]. Coplanar AFMs displaying such odd-parity unidirectional spin splittings are known as odd-parity magnets. In this work, we propose the realization of their missing even-parity counterparts. We begin by deriving the symmetry conditions required for an even-parity, out-of-plane spin splitting. We then show that irradiating a spin-degenerate coplanar AFM with circularly polarized light lifts the [Cˉ2zT][\bar{C}_{2z}|\mathcal{T}] constraint, dynamically generating this even-parity state. Specifically, the light-induced unidirectional spin splitting exhibits a dd-wave texture in momentum space, akin to that of a dd-wave altermagnet. We prove this texture's robustness against spin canting and show it yields a unique clover-like angular dependence in the Drude spin conductivity. Our work demonstrates that optical driving can generate novel spin-split phases in coplanar AFMs, thereby diversifying the landscape of materials exhibiting distinct spin splittings.

Keywords

Cite

@article{arxiv.2601.03358,
  title  = {Light-Induced Even-Parity Unidirectional Spin Splitting in Coplanar Antiferromagnets},
  author = {Di Zhu and Dongling Liu and Zheng-Yang Zhuang and Zhigang Wu and Zhongbo Yan},
  journal= {arXiv preprint arXiv:2601.03358},
  year   = {2026}
}

Comments

13 pages, 6 figures

R2 v1 2026-07-01T08:53:17.874Z