Twisted van der Waals heterostructures with small twist angles form moire superlattices with large super-periodic patterns. Mini-Brillouin zones and flat bands are induced, and these can drive the system into strongly correlated regimes. The physical parameters of these superlattices can be varied by ...
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van der Waals (vdW) heterostructures are promising building blocks for future ultrathin electronics. Fabricating vdW heterostructures by stamping monolayers at arbitrary angles provides an additional range of flexibility to tailor the resulting properties than could be expected by direct growth. Here, we...
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Twisted van der Waals heterostructures have recently emerged as a versatile platform for engineering interaction-driven, topological phenomena with a high ... ML Perrin,A Jayaraj,B Ghawri,... - 《Npjd Materials & Applications》 被引量: 0发表: 2024年 Suppression of symmetry-breaking correlated in...
Twisted Bilayer Graphene: Low‐Energy Physics, Electronic and Optical Propertiesvan der Waals heterostructurestwisted bilayer graphenelow‐energy modelvan Hove singularitiesoptical conductivitygraphene surface plasmon–polaritonsJohn Wiley & Sons, Ltddoi:10.1002/9781119468455.ch44...
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Van der Waals heterostructures based on transition metal dichalcogenides exhibit physical properties that depend on their monolayer constituents' twisting angle and stacking order. Particularly in type-II heterostructures, low-energy photoluminescence is dominated by interlayer excitons, resulting in low emissio...
Plasmon-enhanced near-field chirality in twisted van der Waals heterostructures. Nano Lett. 20, 8711–8718 (2020). Article ADS CAS PubMed Google Scholar Download references Acknowledgements This project was primarily supported by the National Key R&D Program of China (2018YFA0307300, 2018YFA...