arXiv · 2412.11624
NMR study of the local magnetic order in the kagome Weyl semimetal Co$_3$Sn$_2$S$_2$
Abstract
A magnetic Weyl semimetal presents the intriguing possibility of controlling topological properties through magnetic order. The kagome compound \CoSnS~has emerged as one of the most thoroughly characterized magnetic Weyl semimetals, yet the potential coexistence of a ferromagnetic state below $T_c$ = 172~K with a non-collinear antiferromagnetic phase or a glassy state remains unresolved. We employ $^{59}$Co NMR to gain a local perspective on the magnetic order. The magnetic and electric field gradient tensors at room temperature are determined by fitting the NMR spectra using evolutionary algorithms. Zero-field NMR measurements reveal that all Co sites are equivalent in the magnetic phase at low temperatures and up to 90~K. The local magnetic field follows in intensity the macroscopic magnetization as a function of temperature and is tilted from the c-axis by a few degrees toward the nearest triangle center. Above 90~K, a shoulder appears on the low-field side, which we attribute to a preferential tilting of the local field in one direction, breaking the equivalence between the three Co sites of the kagome structure. We rule out any coexistence with an in-plane antiferromagnetic phase and suggest instead that in-plane ferromagnetic-like moments appear above 90~K and play an increasing role in the magnetic order up to the magnetic transition.
Explore related subjects
Keep this discovery
Irek Mukhamedshin, Pawel Wzietek, Fabrice Bert, Philippe Mendels, Anne Forget, Dorothée Colson, Véronique Brouet. 2024-12-16. NMR study of the local magnetic order in the kagome Weyl semimetal Co$_3$Sn$_2$S$_2$. https://doi.org/10.1103/physrevb.111.045122
Cite the original work for its findings. Save a collection to share your selection of sources.