Engineering 2D Square Lattice Hubbard Models in 90° Twisted GeX/SnX (X=S, Se) Moiré Superlattices
Because of the large-period superlattices emerging in moiré two-dimensional (2D) materials, electronic states in such systems exhibit low energy flat bands that can be used to simulate strongly correlated physics in a highly tunable setup.
Qiaoling Xu +8 more
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Nanoscale lattice dynamics in hexagonal boron nitride moiré superlattices. [PDF]
Moore SL +19 more
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Nonlinear Hall effects in two-dimensional moiré superlattices [PDF]
Zefei Wu, Meizhen Huang, Ning Wang
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Second-Order Conductivity Probes a Cascade of Singularities in a Moiré Superlattice [PDF]
Tanweer Ahmed +6 more
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Large-Scale Mapping of Moiré Superlattices by Hyperspectral Raman Imaging. [PDF]
Lin KQ +9 more
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Visualizing electron localization of WS2/WSe2 moiré superlattices in momentum space. [PDF]
Stansbury CH +19 more
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Topological phases in
David Galeano +4 more
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Direct imaging and electronic structure modulation of moiré superlattices at the 2D/3D interface. [PDF]
Reidy K +9 more
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Tunable Wrinkle Patterns in Moiré Superlattice of Interlayer-Bonding Strained Bilayer Graphene
Siyu Liu +3 more
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Real-space observation of a time-reversal invariant topological state in twisted bilayer InSe
The moiré superlattice formed by van der Waals (vdW) stacking of two-dimensional (2D) monolayers with a twist angle can give rise to a variety of novel correlated physical phenomena.
Dacheng Tian +10 more
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