Surface Plasmon Polariton-Assisted Long-Range Exciton Transport in Monolayer Semiconductor Lateral Heterostructure

ORAL

Abstract

Recently, two-dimensional (2D) semiconductor heterostructures, i.e., atomically thin lateral heterostructures (LHSs) based on transition metal dichalcogenides (TMDs) have been demonstrated. In an optically excited LHS, exciton transport is typically limited to a rather short spatial range (\textasciitilde 1 micron). Furthermore, additional losses may occur at the lateral interfacial regions. Here, to overcome these challenges, we experimentally implement a planar metal--oxide--semiconductor (MOS) structure by placing a monolayer of WS2/MoS2 LHS on top of an Al2O3 capped Ag single-crystalline plate. We found that the exciton transport range can be extended to tens of microns. The process of long-range exciton transport in the MOS structure is confirmed to be mediated by an exciton--surface plasmon polariton--exciton conversion mechanism, which allows a cascaded energy transfer process. Thus, the planar MOS structure provides a platform seamlessly combining 2D light-emitting materials with plasmonic planar waveguides, offering great potential for developing integrated photonic/plasmonic functionalities.

Authors

  • Jinwei Shi

    • Beijing Normal University
  • Meng-Hsien Lin

    • National Tsing-Hua University
  • Yi-Tong Chen

    • National Tsing-Hua University
  • Nasim Mohammadi Estakhri

    • The University of Texas at Austin
  • Guo-Wei Tseng

    • National Tsing-Hua University
  • Yanrong Wang

    • Beijing Normal University
  • Hung-Ying Chen

    • National Tsing-Hua University
  • Chun-An Chen

    • National Tsing-Hua University
  • Chih-Kang Shih

    • The University of Texas
    • The University of Texas at Austin
    • Department of Physics, The University of Texas at Austin, TX 78712
    • Univ of Texas, Austin
    • University of Texas at Austin
  • Andrea Alù

    • The University of Texas at Austin
  • Xiaoqin Li

    • Univ of Texas-Austin
    • The University of Texas at Austin
    • University of Texas
    • University of Texas at Austin
    • Univ of Texas, Austin
  • Yi-Hsien Lee

    • National Tsing-Hua University
  • Shangjr Gwo

    • National Tsing-Hua University