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Link between interlayer hybridization and ultrafast charge transfer in WS$_2$-graphene heterostructures

Authors :
Hofmann, Niklas
Weigl, Leonard
Gradl, Johannes
Mishra, Neeraj
Orlandini, Giorgio
Forti, Stiven
Coletti, Camilla
Latini, Simone
Xian, Lede
Rubio, Angel
Paredes, Dilan Perez
Causin, Raul Perea
Brem, Samuel
Malic, Ermin
Gierz, Isabella
Publication Year :
2023

Abstract

Ultrafast charge separation after photoexcitation is a common phenomenon in various van-der-Waals (vdW) heterostructures with great relevance for future applications in light harvesting and detection. Theoretical understanding of this phenomenon converges towards a coherent mechanism through charge transfer states accompanied by energy dissipation into strongly coupled phonons. The detailed microscopic pathways are material specific as they sensitively depend on the band structures of the individual layers, the relative band alignment in the heterostructure, the twist angle between the layers, and interlayer interactions resulting in hybridization. We used time- and angle-resolved photoemission spectroscopy combined with tight binding and density functional theory electronic structure calculations to investigate ultrafast charge separation and recombination in WS$_2$-graphene vdW heterostructures. We identify several avoided crossings in the band structure and discuss their relevance for ultrafast charge transfer. We relate our own observations to existing theoretical models and propose a unified picture for ultrafast charge transfer in vdW heterostructures where band alignment and twist angle emerge as the most important control parameters.<br />Comment: 8 pages, 5 figures

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2303.11856
Document Type :
Working Paper