Layer Dependence of Moiré Excitons and Correlated Electronic States in WSe<sub>2</sub>/WS<sub>2</sub> Moiré Superlattices

ORAL

Abstract

Moiré coupling in transition metal dichalcogenides (TMDCs) superlattices introduces flat minibands that enable strong electronic correlation and fascinating correlated states, and it also modifies the strong Coulomb-interaction-driven excitons and gives rise to moiré excitons. Here, we introduce the layer degree of freedom to the WSe2/WS2 moiré superlattice by changing WSe2 from monolayer to bilayer and trilayer. We observe systematic changes of optical spectra of the moiré excitons, which directly confirm the highly interfacial nature of moiré coupling at the WSe2/WS2 interface. In addition, the energy resonances of moiré excitons are strongly modified, with their separation significantly increased in multilayer WSe2/monolayer WS2 moiré superlattice. The additional WSe2 layers also modulate the strong electronic correlation strength, evidenced by the reduced Mott transition temperature with added WSe2 layer(s). The layer dependence of both moiré excitons and correlated electronic states can be well described by our theoretical model. Our study presents a new method to tune the strong electronic correlation and moiré exciton bands in the TMDCs moiré superlattices, ushering in an exciting platform to engineer quantum phenomena stemming from strong correlation and Coulomb interaction.

*Z. Lian and S.-F.S. acknowledge support from NYSTAR through Focus Center-NY–RPI Contract C150117. S.-F. S. also acknowledges the support from NSF (Career Grant DMR-1945420 and DMR-2104902) and AFOSR (FA9550-18-1-0312). X.H. and Y.-T.C. acknowledge support from NSF ?under award DMR- 2104805. Y.S. and C.Z. acknowledge support from NSF PHY-2110212, PHY-1806227, ARO (W911NF17-1-0128), and AFOSR (FA9550-20-1-0220). D.C. acknowledges support from the National Natural Science Foundation of China, Grant number 62004032.

Publication: 1. Dongxue Chen, Zhen Lian, Xiong Huang, Ying Su, Mina Rashetnia, Li Yan, Mark Blei, Takashi Taniguchi, Kenji Watanabe, Sefaattin Tongay, Zenghui Wang*, Chuanwei Zhang*, Yong-Tao Cui*, Su-Fei Shi*,Tuning Moiré Excitons and Correlated Electronic States through Layer Degree of Freedom. Nature Commun. 13, 4810 (2022)

2. Dongxue Chen, Zhen Lian, Xiong Huang, Ying Su, Mina Rashetnia, Lei Ma, Li Yan, Mark Blei, Li Xiang, Takashi Taniguchi , Kenji Watanabe, Sefaattin Tongay, Dmitry Smirnov, Zenghui Wang*, Chuanwei Zhang*, Yong-Tao Cui*? and Su-Fei Shi*, Excitonic insulator in a heterojunction moiré superlattice. Nature Physics. 18, 1171–1176 (2022)

Presenters

  • Dongxue Chen

    • Rensselaer Polytechnic Institute

Authors

  • Dongxue Chen

    • Rensselaer Polytechnic Institute
  • Zhen Lian

    • Rensselaer Polytechnic Institute
    • RPI
  • Xiong Huang

    • University of California, Riverside
  • Ying Su

    • University of Texas at Dallas
    • UT Dallas
  • Zenghui Wang

    • University of Electronic Science and Technology of China
    • UESTC
  • Chuanwei Zhang

    • University of Texas at Dallas
  • Yongtao Cui

    • University of California, Riverside
  • Sufei Shi

    • Rensselaer Polytechnic Institute