6 papers
Giant field-tunable nonlinear Hall effect by Lorentz skew scattering in a graphene moire superlattice
Pan He, Min Zhang, Yue-Xin Huang +13
The nonlinear Hall effect (NHE) can enable rectification and energy harvesting, and its control by external fields, including gate, strain and magnetic field, has been pursued inte…
Highly tunable Gilbert damping in two-dimensional van der Waals ferromagnet Fe3GaTe2: From bilayer to the twisted bilayer
Jie Wang, Shi-Bo Zhao, Jia-wan Li +2
Van der Waals ferromagnet Fe3GaTe2 possesses both a high Curie temperature and robust perpendicular magnetic anisotropy, holding promise for practical spintronic applications. In p…
Giant Anomalous Hall Conductivity and Gilbert Damping in Room-temperature Ferromagnetic Half-Heusler Alloys PtMnBi
Hong-Xue Jiang, Jia-wan Li, Shi-Bo Zhao +2
Half-Heusler alloys have emerged as promising candidates for novel spintronic applications due to their exceptional properties including the high Curie temperature (TC) above room…
First-principles study of electronic and magnetic properties of self-intercalated van der Waals magnet CrGeTe
Jia-wan Li, Shi-Bo Zhao, Lin Zhuang +1
Self-intercalated van der Waals magnets, characterized by self-intercalating native atoms into van der Waals layered structures with intrinsic magnetism, exhibit a variety of novel…
Thickness-dependent anisotropic Gilbert damping in heterostructures of ferromagnets and two-dimensional ferroelectric bismuth monolayer
Shi-Bo Zhao, Xiang-Fan Huang, Ze-quan Wang Ruqian Wu +1
The Gilbert damping parameter, which describes magnetization dynamics, is crucial for the performance of modern spintronic devices, affecting factors such as the switching speed an…
Above room-temperature two-dimensional ferromagnetic half-metals in Mn-based Janus magnets
Xiang-Fan Huang, Kang-Jie Li, Zequan Wang +4
Two-dimensional (2D) ferromagnets and their heterostructures offer fertile grounds for designing fascinating functionalities in ultra-thin spintronic devices. Here, by first-princi…