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MoiréDirac fermions in transition metal dichalcogenides heterobilayers

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摘要 Monolayer group-VIB transition metal dichalcogenides(TMDs)feature low-energy massive Dirac fermions,which have valley contrasting Berry curvature.This nontrivial local band topology gives rise to valley Hall transport and optical selection rules for interband transitions that open up new possibilities for valleytronics.However,the large bandgap in TMDs results in relatively small Berry curvature,leading to weak valley contrasting physics in practical experiments.Here,we show that Dirac fermions with tunable large Berry curvature can be engineered in moirésuperlattice of TMD heterobilayers.These moiréDirac fermions are created in a magnified honeycomb lattice with its sublattice degree of freedom formed by two local moirépotential minima.We show that applying an on-site potential can tune the moiréflat bands into helical ones.In short-period moirésuperlattice,we find that the two moirévalleys become asymmetric,which results in a net spin Hall current.More interestingly,a circularly polarized light drives these moiréDirac fermions into quantum anomalous Hall phase with chiral edge states.Our results open a new possibility to design the moiré-scale spin and valley physics using TMD moiréstructures.
作者 车成龙 吕亚威 童庆军 Chenglong Che;Yawei Lv;Qingjun Tong(School of Physics and Electronics,Hunan University,Changsha 410082,China)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第10期31-37,共7页 中国物理B(英文版)
基金 Project supported by the Science Fund for Distinguished Young Scholars of Hunan Province(Grant No.2022J10002) the National Key Research and Development Program of China(Grant No.2021YFA1200503) the Fundamental Research Funds for the Central Universities from China。
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