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July 8, 2024Physical review. B./Physical review. B5 citations

Excitonic response in transition metal dichalcogenide heterostructures from first principles: Impact of stacking, twisting, and interlayer distance

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RRR. RehoABAndrés R. Botello‐MéndezDSDavide Sangalli

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Abstract

The authors use many-body perturbation theory to predict how stacking, twisting, and interlayer distance affect intralayer and interlayer excitons in the transition metal dichalcogenide van der Waals heterostructures MoS₂/WS₂ and MoSe₂/WSe₂. They find ``gray'' excitons, visible only for in-plane detection. Their analysis into the excitonic lifetimes supports the idea of exciton transport for innovative applications in quantum information systems, next-generation electronic devices, photodetectors light-emitting devices, and lasers. Additionally, the authors observe that the misaligned heterostructure shows a unique state with two intralayer excitons degenerate in energy.

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Cite This Study

Reho et al. (2024) studied this question.

synapsesocial.com/papers/68e60f70b6db6435875a2e17https://doi.org/10.1103/physrevb.110.035118
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