arXiv · 2608.12505
Defect-induced optical magnons and local magnetic correlations in MnSb2Te4
Abstract
Magnetic defect engineering offers a route to manipulate and control magnetic and electronic states in quantum materials. In the Mn(Bi,Sb)2Te4 family of topological magnetic insulators, Sb substitution facilitates site mixing between Mn and Sb atoms that affects magnetic order and band topology. Here we directly probe these defect-induced magnetic interactions using inelastic neutron scattering on single crystals of MnSb2Te4. We find that antisite mixing generates inequivalent and disordered magnetic sublattices where strong defect-induced antiferromagnetic coupling produces an optical magnon with a large gap. Semi-classical spin-dynamics simulations accurately capture magnetic excitations in the ordered and paramagnetic states and identify that linear Mn-Te-Mn bonds mediate coupling to antisite magnetic defects.
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Dhurba R. Jaishi, Bing Li, Tianxiong Han, S. X. M. Riberolles, D. M. Pajerowski, Jiaqiang Yan, R. J. McQueeney. 2026-08-12. Defect-induced optical magnons and local magnetic correlations in MnSb2Te4. https://arxiv.org/abs/2608.12505
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