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Moir\'e excitons in MoSe₂-WSe₂ heterobilayers and heterotrilayers

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arxiv 2006.09105 v2 pith:UIEWE4E6 submitted 2020-06-16 cond-mat.mes-hall cond-mat.mtrl-sci

Moir\'e excitons in MoSe₂-WSe₂ heterobilayers and heterotrilayers

classification cond-mat.mes-hall cond-mat.mtrl-sci
keywords excitonsinterlayermoirheterostructuresmosetwistedemissionheterobilayers
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Layered two-dimensional materials exhibit rich transport and optical phenomena in twisted or lattice-incommensurate heterostructures with spatial variations of interlayer hybridization arising from moir\'e interference effects. Here, we report experimental and theoretical studies of excitons in twisted heterobilayers and heterotrilayers of transition metal dichalcogenides. Using MoSe$_2$-WSe$_2$ stacks as representative realizations of twisted van der Waals bilayer and trilayer heterostructures, we observe contrasting optical signatures and interpret them in the theoretical framework of interlayer moir\'e excitons in different spin and valley configurations. We conclude that the photoluminescence of MoSe$_2$-WSe$_2$ heterobilayer is consistent with joint contributions from radiatively decaying valley-direct interlayer excitons and phonon-assisted emission from momentum-indirect reservoirs that reside in spatially distinct regions of moir\'e supercells, whereas the heterotrilayer emission is entirely due to momentum-dark interlayer excitons of hybrid-layer valleys. Our results highlight the profound role of interlayer hybridization for transition metal dichalcogenide heterostacks and other realizations of multi-layered semiconductor van der Waals heterostructures.

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