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Spanning Fermi arcs in a two-dimensional magnet

Authors :
Ying-Jiun Chen
Jan-Philipp Hanke
Markus Hoffmann
Gustav Bihlmayer
Yuriy Mokrousov
Stefan Blügel
Claus M. Schneider
Christian Tusche
Source :
Nature Communications 13(1), 5309 (2022). doi:10.1038/s41467-022-32948-z, Nature communications, vol 13, iss 1
Publication Year :
2021

Abstract

The discovery of topological states of matter has led to a revolution in materials research. When external or intrinsic parameters break certain symmetries, global properties of topological materials change drastically. A paramount example is the emergence of Weyl nodes under broken inversion symmetry, acting like magnetic monopoles in momentum space. However, while a rich variety of non-trivial quantum phases could in principle also originate from broken time-reversal symmetry, realizing systems that combine magnetism with complex topological properties is remarkably elusive due to both considerable experimental and theoretical challenges. Here, we demonstrate that giant open Fermi arcs are created at the surface of ultrathin hybrid magnets. The Fermi-surface topology of an atomically thin ferromagnet is substantially modified by the hybridization with a heavy-metal substrate, giving rise to Fermi-surface discontinuities that are bridged by the Fermi arcs. Due to the interplay between magnetism and topology, we can control both the shape and the location of the Fermi arcs by tuning the magnetization direction. The hybridization points in the Fermi surface can be attributed to a non-trivial "mixed" topology and induce hot spots in the Berry curvature, dominating spin and charge transport as well as magneto-electric coupling effects.<br />14 pages, 10 figures

Details

ISSN :
20411723
Volume :
13
Issue :
1
Database :
OpenAIRE
Journal :
Nature communications
Accession number :
edsair.doi.dedup.....0c2d6ca4c82e4173f0a0415308ce0bc6