Interlayer valley excitons in heterobilayers of transition metal dichalcogenides

被引:0
|
作者
Pasqual Rivera
Hongyi Yu
Kyle L. Seyler
Nathan P. Wilson
Wang Yao
Xiaodong Xu
机构
[1] University of Washington,Department of Physics
[2] University of Hong Kong,Department of Physics and Center of Theoretical and Computational Physics
[3] University of Washington,Department of Materials Science and Engineering
来源
Nature Nanotechnology | 2018年 / 13卷
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摘要
Stacking different two-dimensional crystals into van der Waals heterostructures provides an exciting approach to designing quantum materials that can harness and extend the already fascinating properties of the constituents. Heterobilayers of transition metal dichalcogenides are particularly attractive for low-dimensional semiconductor optics because they host interlayer excitons—with electrons and holes localized in different layers—which inherit valley-contrasting physics from the monolayers and thereby possess various novel and appealing properties compared to other solid-state nanostructures. This Review presents the contemporary experimental and theoretical understanding of these interlayer excitons. We discuss their unique optical properties arising from the underlying valley physics, the strong many-body interactions and electrical control resulting from the electric dipole moment, and the unique effects of a moiré superlattice on the interlayer exciton potential landscape and optical properties.
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页码:1004 / 1015
页数:11
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