We demonstrate strong exciton-plasmon coupling in silver nanodisk arrays integrated with monolayer MoS2 via angle-resolved reflectance microscopy spectra of the coupled system. Strong exciton-plasmon coupling is observed with the exciton-plasmon coupling strength up to 58 meV at 77 K, which also survives at room temperature. The strong coupling involves three types of resonances: MoS2 excitons, localized surface plasmon resonances (LSPRs) of individual silver nanodisks and plasmonic lattice resonances of the nanodisk array. We show that the exciton-plasmon coupling strength, polariton composition and dispersion can be effectively engineered by tuning the geometry of the plasmonic lattice, which makes the system promising for realizing novel two-dimensional plasmonic polaritonic devices.
@article{arxiv.1511.03750,
title = {Strong exciton-plasmon coupling in MoS2 coupled with plasmonic lattice},
author = {Wenjing Liu and Bumsu Lee and Carl H. Naylor and Ho-Seok Ee and Joohee Park and A. T. Charlie Johnson and Ritesh Agarwal},
journal= {arXiv preprint arXiv:1511.03750},
year = {2016}
}