Geometric Spin Degeneracy in Spin-Orbit-Free Compensated Magnets

Fuente: arXiv
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Main Authors: Lee, Seung Hun, Qian, Yuting, Dai, Xi, Yang, Bohm-Jung
Format: Preprint
Published: 2026
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author Lee, Seung Hun
Qian, Yuting
Dai, Xi
Yang, Bohm-Jung
author_facet Lee, Seung Hun
Qian, Yuting
Dai, Xi
Yang, Bohm-Jung
contents Compensated magnets with vanishing net magnetization can exhibit both pronounced spin splitting and unconventional band degeneracies. In altermagnets, such degeneracies are enforced by crystal and magnetic symmetries. In compensated ferrimagnets, however, they may arise even in the absence of the corresponding symmetry protection, raising a fundamental question about the origin of spin degeneracy in spin-orbit-free magnetic systems. Here, we develop a theoretical framework for spin-orbit-free compensated magnets in which spin degeneracies are protected by geometric constraints rather than by spin symmetry. We show that zero net magnetization imposes a strong condition for the emergence of nodes formed by formally spin-degenerate bands, even when no conventional spin symmetry is present. Our analysis, applicable in the weak-interaction regime, identifies a general mechanism for spin degeneracy beyond group-theoretical protection. The framework accounts for the unconventional spin degeneracies recently reported in compensated ferrimagnets and provides a unified description of band degeneracies across a broad class of magnetic phases with negligible spin-orbit coupling.
format Preprint
id arxiv_https___arxiv_org_abs_2604_13266
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Geometric Spin Degeneracy in Spin-Orbit-Free Compensated Magnets
Lee, Seung Hun
Qian, Yuting
Dai, Xi
Yang, Bohm-Jung
Mesoscale and Nanoscale Physics
Compensated magnets with vanishing net magnetization can exhibit both pronounced spin splitting and unconventional band degeneracies. In altermagnets, such degeneracies are enforced by crystal and magnetic symmetries. In compensated ferrimagnets, however, they may arise even in the absence of the corresponding symmetry protection, raising a fundamental question about the origin of spin degeneracy in spin-orbit-free magnetic systems. Here, we develop a theoretical framework for spin-orbit-free compensated magnets in which spin degeneracies are protected by geometric constraints rather than by spin symmetry. We show that zero net magnetization imposes a strong condition for the emergence of nodes formed by formally spin-degenerate bands, even when no conventional spin symmetry is present. Our analysis, applicable in the weak-interaction regime, identifies a general mechanism for spin degeneracy beyond group-theoretical protection. The framework accounts for the unconventional spin degeneracies recently reported in compensated ferrimagnets and provides a unified description of band degeneracies across a broad class of magnetic phases with negligible spin-orbit coupling.
title Geometric Spin Degeneracy in Spin-Orbit-Free Compensated Magnets
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2604.13266