arXiv · 2605.22517
Magnetoelastic mapping of the high-field phase diagram in the topological cubic helimagnet SrFeO$_{3}$
Abstract
The cubic perovskite SrFeO$_{3}$ is a prototypical centrosymmetric itinerant magnet that hosts a quadruple-${\mathbf Q}$ hedgehog-antihedgehog lattice and exhibits a complex magnetic-field-temperature phase diagram. Yet, the microscopic mechanism underlying the emergence of its versatile multiple-${\mathbf Q}$ phases remains unresolved. Here, we reveal the field-orientation dependence of the magnetic phase diagram and establish an effective spin Hamiltonian for SrFeO$_{3}$ that incorporates a cubic single-ion anisotropy together with bilinear and biquadratic interactions in momentum space, which originate from the spin-charge coupling. In addition, we observe magnetoelastic signatures of a redistribution of the ligand-hole density upon entering the forced ferromagnetic phase. These findings emphasize the pivotal importance of electronic itinerancy arising from the formation of a ligand-hole band in stabilizing multiple-${\mathbf Q}$ phases.
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Masaki Gen, Shun Okumura, Shusaku Imajo, Taro Nakajima, Karel Prokes, Shunsuke Kitou, Yusuke Tokunaga, Yoichi Nii, Koichi Kindo, Yoshimitsu Kohama, Shintaro Ishiwata, Taka-hisa Arima. 2026-05-21. Magnetoelastic mapping of the high-field phase diagram in the topological cubic helimagnet SrFeO$_{3}$. https://arxiv.org/abs/2605.22517
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