Electrical control of inter-layer excitons in van der Waals heterostructures

POSTER

Abstract

We investigate excitons in stacked transition metal dichalcogenide (TMDC) layers under perpendicularly applied electric field, herein MoSe2/WSe2 van der Waals heterostructures [1]. Band structures are obtained with density functional theory calculations, along with the electron and hole wave functions in conduction and valence bands, respectively. Although the type-II nature of the heterostructure leads to fully charge separated inter-layer excitons, charge carriers distribution among the layers is shown to be easily tunable by external field. Our results show that moderate values of electric field produce more evenly distributed wave functions along the heterostructure, thus enhancing both the inter-layer exciton binding energy and, most notably, its oscillator strength.

[1] https://arxiv.org/abs/1709.08315

Presenters

  • Ongun Ozcelik

    Princeton University

Authors

  • Andrey Chaves

    Universidade Federal do Ceara

  • Javad Azadani

    University of Minnesota

  • Ongun Ozcelik

    Princeton University

  • Roberto Grassi

    University of Minnesota

  • Tony Low

    Electrical and Computer Engineering, University of Minnesota Twin Cities, University of Minnesota