Published July 9, 2024 | Version v1
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Strain fingerpringting of exciton valley character in 2D semiconductors

  • 1. Freie Universität Berlin Fachbereich Physik
  • 1. Freie Universität Berlin Fachbereich Physik
  • 2. ROR icon Freie Universität Berlin
  • 3. ROR icon Philipps University of Marburg
  • 4. ROR icon TU Wien
  • 5. ROR icon Chalmers University of Technology
  • 6. ROR icon Humboldt-Universität zu Berlin

Description

Raw data which are used to generate the figures in the publication 'Strain fingerpringting of exciton valley character in 2D semiconductors'.

Abstract of the paper:

Intervalley excitons with electron and hole wavefunctions residing in different valleys determine the long-range transport and dynamics observed in many semiconductors. However, these excitons with vanishing oscillator strength do not directly couple to light and, hence, remain largely unstudied. Here, we develop a simple nanomechanical technique to control the energy hierarchy of valleys via their contrasting response to mechanical strain. We use our technique to discover previously inaccessible intervalley excitons associated with K, Γ, or Q valleys in prototypical 2D semiconductors WSe2 and WS2. We also demonstrate a new brightening mechanism, rendering an otherwise “dark” intervalley exciton visible via strain-controlled hybridization with an intravalley exciton. Moreover, we classify various localized excitons from their distinct strain response and achieve large tuning of their energy. Overall, our valley engineering approach establishes a new way to identify intervalley excitons and control their interactions in a diverse class of 2D systems.

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Cites
Publication: 10.1038/s41467-022-35352-9 (DOI)

Dates

Created
2024-07-09