Symmetry Breaking and Berry Curvature in 2D Janus γ‑Ge2XY (X, Y = S, Se, and Te)
1Department of Physics, Graphene Research Institute, and Quantum Information Science and Technology Center, and Korea-US-Uzbekistan Quantum Materials Devices International Research Center, Sejong University, Seoul 05006, Korea.
Abstract:
Two-dimensional (2D) Janus materials have recently attracted considerable attention as promising building blocks for next-generation multifunctional nanoscale devices owing to the unconventional physical phenomena arising from their intrinsic structural asymmetry. In this study, we demonstrate that the sombrero-shaped electronic dispersion in monolayer Janus γ-Ge2XY (X, Y = S, Se, Te) produces a pronounced Berry curvature. To elucidate the spin-resolved origin of this Berry-curvature response, we incorporate spin-orbit coupling (SOC) into the band-structure calculations, which reveals momentum-dependent Zeeman-type spin splitting along the Γ-centered inverted-sombrero rim as well as opposite spin polarizations at the K1 and K1' valleys. Subsequent Berry-curvature analyses show that γ-Ge2SSe and γ-Ge2SeTe possess comparable magnitudes of approximately 129 and 110 Å2, respectively, but with opposite signs at K1 and K1'. Remarkably, γ-Ge2STe exhibits an even larger Berry curvature of about 180 Å2, underscoring its enhanced potential for valleytronic and spintronic applications.
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