Evidence for moiré excitons in van der Waals heterostructures

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作者
Kha Tran
Galan Moody
Fengcheng Wu
Xiaobo Lu
Junho Choi
Kyounghwan Kim
Amritesh Rai
Daniel A. Sanchez
Jiamin Quan
Akshay Singh
Jacob Embley
André Zepeda
Marshall Campbell
Travis Autry
Takashi Taniguchi
Kenji Watanabe
Nanshu Lu
Sanjay K. Banerjee
Kevin L. Silverman
Suenne Kim
Emanuel Tutuc
Li Yang
Allan H. MacDonald
Xiaoqin Li
机构
[1] The University of Texas at Austin,Department of Physics and Center for Complex Quantum Systems
[2] National Institute of Standards & Technology,Materials Science Division
[3] Argonne National Laboratory,Department of Physics
[4] Washington University in St Louis,Microelectronics Research Center, Department of Electrical and Computer Engineering
[5] The University of Texas at Austin,Texas Materials Institute
[6] The University of Texas at Austin,Department of Aerospace Engineering and Engineering Mechanics
[7] National Institute of Material Science,Department of Photonics and Nanoelectronics and Department of Applied Physics
[8] The University of Texas at Austin,Department of Material Science and Engineering
[9] Hanyang University,undefined
[10] Massachusetts Institute of Technology,undefined
来源
Nature | 2019年 / 567卷
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摘要
Recent advances in the isolation and stacking of monolayers of van der Waals materials have provided approaches for the preparation of quantum materials in the ultimate two-dimensional limit1,2. In van der Waals heterostructures formed by stacking two monolayer semiconductors, lattice mismatch or rotational misalignment introduces an in-plane moiré superlattice3. It is widely recognized that the moiré superlattice can modulate the electronic band structure of the material and lead to transport properties such as unconventional superconductivity4 and insulating behaviour driven by correlations5–7; however, the influence of the moiré superlattice on optical properties has not been investigated experimentally. Here we report the observation of multiple interlayer exciton resonances with either positive or negative circularly polarized emission in a molybdenum diselenide/tungsten diselenide (MoSe2/WSe2) heterobilayer with a small twist angle. We attribute these resonances to excitonic ground and excited states confined within the moiré potential. This interpretation is supported by recombination dynamics and by the dependence of these interlayer exciton resonances on twist angle and temperature. These results suggest the feasibility of engineering artificial excitonic crystals using van der Waals heterostructures for nanophotonics and quantum information applications.
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页码:71 / 75
页数:4
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