paper

Easy-cone state mediating the spin reorientation in topological kagome magnet FeSn

arXiv:2502.03239

Abstract

We investigated temperature-driven spin reorientation (SR) in the itinerant kagome magnet FeSn using high-resolution synchrotron x-ray diffraction, neutron diffraction, magnetometry, and magnetic force microscopy (MFM), further supported by phenomenological analysis. Our study reveals a crossover from the state with easy-plane anisotropy to the high-temperature state with uniaxial easy-axis anisotropy taking place between ~ K through an intermediate easy-cone (or tilted spin) state. This state, induced by the interplay between the anisotropy constants and , is clearly manifested in the thermal evolution of the magnetic structure factor, which reveals a gradual change of the SR angle between ~K. We also found that the SR is accompanied by a magnetoelastic effect. Zero-field MFM images across the SR range show a transformation in surface magnetic patterns from a dendritic structure at 120~K, to domain wall dominated MFM contrast at 40~K.

24 pages, 5 figures, 75 references

Easy-cone state mediating the spin reorientation in topological kagome magnet Fe$_3$Sn$_2$ · wovepaper