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February 13, 2024Proceedings of the National Academy of Sciences76 citationsOpen Access

Maximally localized Wannier functions, interaction models, and fractional quantum anomalous Hall effect in twisted bilayer MoTe 2

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CXCheng XuJLJiangxu LiYXYong Xu

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Abstract

We investigate the moiré band structures and the strong correlation effects in twisted bilayer MoTeFormula: see text for a wide range of twist angles, employing a combination of various techniques. Using large-scale first-principles calculations, we pinpoint realistic continuum modeling parameters, subsequently deriving the maximally localized Wannier functions for the top three moiré bands. Simplifying our model with reasonable assumptions, we obtain a minimal two-band model, encompassing Coulomb repulsion, correlated hopping, and spin exchange. Our minimal interaction models pave the way for further exploration of the rich many-body physics in twisted MoTeFormula: see text. Furthermore, we explore the phase diagrams of the system through Hartree-Fock approximation and exact diagonalization (ED). Our two-band ED analysis underscores significant band-mixing effects in this system, which enlarge the optimal twist angle for fractional quantum anomalous Hall states.

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Cite This Study

Xu et al. (2024) studied this question.

synapsesocial.com/papers/68e7941db6db6435877059c7https://doi.org/10.1073/pnas.2316749121
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