Research paperTheoreticalComputational MultiscaleLayer Hall counterflow as a model probe of magic-angle twisted bilayer grapheneJihang Zhu, Dawei Zhai, Cong Xiao, Wang YaoarXiv·2023·10.1103/PhysRevB.109.155114·arXiv:2312.11662AbstractWe study layer Hall counterflow and the associated in-plane magnetization in magic-angle twisted bilayer graphene within three continuum models: the Bistritzer-MacDonald model, a generalized BM model with non-local interlayer tunneling, and a comprehensive relaxation-aware continuum model. The work shows that layer-projected Hall conductivity depends sensitively on model details and is renormalized by self-consistent Hartree fields, suggesting layer Hall counterflow as a probe of MATBG parameters.Read more
Magic-angle twisted bilayer graphene modeled with continuum theories for layer Hall counterflow and in-plane magnetization.No measurements recordedSimulatedgraphene/grapheneStudied MaterialExpand
Research paperTheoreticalComputational MultiscaleLayer Hall counterflow as a model probe of magic-angle twisted bilayer grapheneJihang Zhu, Dawei Zhai, Cong Xiao, Wang YaoarXiv·2023·10.1103/PhysRevB.109.155114·arXiv:2312.11662AbstractWe study layer Hall counterflow and the associated in-plane magnetization in magic-angle twisted bilayer graphene within three continuum models: the Bistritzer-MacDonald model, a generalized BM model with non-local interlayer tunneling, and a comprehensive relaxation-aware continuum model. The work shows that layer-projected Hall conductivity depends sensitively on model details and is renormalized by self-consistent Hartree fields, suggesting layer Hall counterflow as a probe of MATBG parameters.Read more
Magic-angle twisted bilayer graphene modeled with continuum theories for layer Hall counterflow and in-plane magnetization.No measurements recordedSimulatedgraphene/grapheneStudied MaterialExpand
Research paperTheoreticalComputational MultiscaleLayer Hall counterflow as a model probe of magic-angle twisted bilayer grapheneJihang Zhu, Dawei Zhai, Cong Xiao, Wang YaoarXiv·2023·10.1103/PhysRevB.109.155114·arXiv:2312.11662AbstractWe study layer Hall counterflow and the associated in-plane magnetization in magic-angle twisted bilayer graphene within three continuum models: the Bistritzer-MacDonald model, a generalized BM model with non-local interlayer tunneling, and a comprehensive relaxation-aware continuum model. The work shows that layer-projected Hall conductivity depends sensitively on model details and is renormalized by self-consistent Hartree fields, suggesting layer Hall counterflow as a probe of MATBG parameters.Read more
Magic-angle twisted bilayer graphene modeled with continuum theories for layer Hall counterflow and in-plane magnetization.No measurements recordedSimulatedgraphene/grapheneStudied MaterialExpand
Research paperTheoreticalComputational MultiscaleLayer Hall counterflow as a model probe of magic-angle twisted bilayer grapheneJihang Zhu, Dawei Zhai, Cong Xiao, Wang YaoarXiv·2023·10.1103/PhysRevB.109.155114·arXiv:2312.11662AbstractWe study layer Hall counterflow and the associated in-plane magnetization in magic-angle twisted bilayer graphene within three continuum models: the Bistritzer-MacDonald model, a generalized BM model with non-local interlayer tunneling, and a comprehensive relaxation-aware continuum model. The work shows that layer-projected Hall conductivity depends sensitively on model details and is renormalized by self-consistent Hartree fields, suggesting layer Hall counterflow as a probe of MATBG parameters.Read more
Magic-angle twisted bilayer graphene modeled with continuum theories for layer Hall counterflow and in-plane magnetization.No measurements recordedSimulatedgraphene/grapheneStudied MaterialExpand