arXiv · 2401.15888
Topological magnon-polarons in honeycomb antiferromagnets with spin-flop transition
Abstract
We theoretically investigate the thermal Hall transport of magnon-polarons in a two-dimensional honeycomb antiferromagnetic insulator under the influence of a perpendicular magnetic field, varying in strength. The application of a perpendicular magnetic field induces a magnetic phase transition from the collinear antiferromagnetic phase to the spin-flop phase, leading to a significant alteration in Hall transport across the transition point. In this paper, our focus is on the intrinsic contribution to thermal Hall transport arising from the magnetoelastic interaction. To facilitate experimental verification of our theoretical results, we present the dependence of thermal Hall conductivity on magnetic field strength and temperature.
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Gyungchoon Go, Heejun Yang, Je-Geun Park, Se Kwon Kim. 2024-01-29. Topological magnon-polarons in honeycomb antiferromagnets with spin-flop transition. https://doi.org/10.1103/physrevb.109.184435
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