arXiv · 2207.05857
Nonlinear nonreciprocal transport in antiferromagnets free from spin-orbit coupling
Abstract
We theoretically propose a realization of a nonlinear nonreciprocal transport in antiferromagnets without relying on the relativistic spin-orbit coupling. Through the symmetry and microscopic model analyses, we show that a local spin scalar chirality to induce an asymmetric band modulation becomes a source of a Drude-type nonlinear transport, while an electric polarization induced by a collinear spin configuration in a triangle unit leads to a Berry-curvature-dipole-type nonlinear transport. We demonstrate that 120$^\circ$ antiferromagnetic ordering on a triangular lattice and a breathing kagome lattice in an external magnetic field are typical examples. Our results open a new direction of designing and engineering functional materials with showing rich parity-violating transport phenomena by spontaneous magnetic phase transitions.
Explore related subjects
Keep this discovery
Satoru Hayami, Megumi Yatsushiro. 2022-07-12. Nonlinear nonreciprocal transport in antiferromagnets free from spin-orbit coupling. https://doi.org/10.1103/physrevb.106.014420
Cite the original work for its findings. Save a collection to share your selection of sources.