September 2023

Journal

Strain-tunable Berry curvature in quasi-two-dimensional chromium telluride

By:
Lauter, Valeria ; Chi, Hang; Moodera, Jagadeesh; Ou, Yunbo; Heiman, Don; Ambaye, Haile A; Keum, Jong K; B eldred, Tim; Gao, Wenpei; Kwon, Sohee; Murray, Joseph; Dreyer, Michael; E butera, Robert; C foucher, Alexandre; T greenberg, Alice; R neupane, Mahesh; J de coster, George; A vail, Owen
Journal Name:
Nature Communications
Page Number:
3222
Volume:
14
Issue Number:
1
Publication Date:
September 2023
View DOI Listing:
https://doi.org/10.1038/s41467-023-38995-4

Abstract

Magnetic transition metal chalcogenides form an emerging platform for exploring spin-orbit driven Berry phase phenomena owing to the nontrivial interplay between topology and magnetism. Here we show that the anomalous Hall effect in pristine Cr2Te3 thin films manifests a unique temperature-dependent sign reversal at nonzero magnetization, resulting from the momentum-space Berry curvature as established by first-principles simulations. The sign change is strain tunable, enabled by the sharp and well-defined substrate/film interface in the quasi-two-dimensional Cr2Te3 epitaxial films, revealed by scanning transmission electron microscopy and depth-sensitive polarized neutron reflectometry. This Berry phase effect further introduces hump-shaped Hall peaks in pristine Cr2Te3 near the coercive field during the magnetization switching process, owing to the presence of strain-modulated magnetic layers/domains. The versatile interface tunability of Berry curvature in Cr2Te3 thin films offers new opportunities for topological electronics.