Berry curvature contributions of kagome-lattice fragments in amorphous Fe-Sn thin films.
basic_science · Level V
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- Record sourced from PubMed, PMID 37311774.
- Also identified by DOI 10.1038/s41467-023-39112-1 and PMC identifier 10264439.
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Abstract
Amorphous semiconductors are widely applied to electronic and energy-conversion devices owing to their high performance and simple fabrication processes. The topological concept of the Berry curvature is generally ill-defined in amorphous solids, due to the absence of long-range crystalline order. Here, we demonstrate that the Berry curvature in the short-range crystalline order of kagome-lattice fragments effectively contributes to the anomalous electrical and magneto-thermoelectric properties in Fe-Sn amorphous films. The Fe-Sn films on glass substrates exhibit large anomalous Hall and Nernst effects comparable to those of the single crystals of topological semimetals Fe<sub>3</sub>Sn<sub>2</sub> and Fe<sub>3</sub>Sn. With modelling, we reveal that the Berry curvature contribution in the amorphous state likely originates from randomly distributed kagome-lattice fragments. This microscopic interpretation sheds light on the topology of amorphous materials, which may lead to the realization of functional topological amorphous electronic devices.