Uniaxial Strain Tuned Magnetism of the Altermagnet Candidate H-FeS.

Yao, Weiliang; Ye, Feng; Morgan, Zachary J; Abernathy, Douglas L; Liu, Ruixian; Xu, Sijie; Gao, Yuxiang; Allen, Kevin et al. · Adv Mater · 2026

basic_science · Level V

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Abstract

Altermagnets are a newly recognized class of magnetic materials characterized by compensated spin configurations while still breaking time-reversal symmetry and exhibiting unconventional transport phenomena. Hexagonal FeS (h-FeS) is a recently identified altermagnet candidate that shows a spontaneous anomalous Hall effect (AHE) accompanied by a tiny net magnetization. Here, we show that both the spontaneous AHE and magnetization can be effectively suppressed by an in-plane compressive strain. Since neutron diffraction measurements show that the applied uniaxial strain only modifies the in-plane domain population but does not affect the in-plane magnetic structure, the major effect of the applied strain is to tune the small <math xmlns="http://www.w3.org/1998/Math/MathML"><mi>c</mi></math> -axis ferromagnetic moment. Our results demonstrate a strong correlation between the tiny net magnetization and the spontaneous AHE in h-FeS, and show that uniaxial strain provides an effective knob to tune both properties in this altermagnet candidate for spintronic applications.