Electronic scattering off a magnetic hopfion
Abstract
We study scattering of itinerant electrons off a magnetic hopfion in a three-dimensional metallic magnet described by a magnetization vector . A hopfion is a confined topological soliton of characterized by an {\it emergent} magnetic field with vanishing average value . We evaluate the scattering amplitude in the opposite limits of large and small hopfion radius using the eikonal and Born approximations, respectively. In both limits, we find that the scattering cross-section contains a skew-scattering component giving rise to the Hall effect within a hopfion plane. That conclusion contests the popular notion that the topological Hall effect in non-collinear magnetic structures necessarily implies . In the limit of small hopfion radius , we expand the Born series in powers of momentum and identify different expansion terms corresponding to the hopfion anisotropy, toroidal moment, and skew-scattering.
Cite
@article{arxiv.2104.09584,
title = {Electronic scattering off a magnetic hopfion},
author = {Sergey S. Pershoguba and Domenico Andreoli and Jiadong Zang},
journal= {arXiv preprint arXiv:2104.09584},
year = {2021}
}
Comments
8+4 pages, 3+1 figures