English

Strong Exciton-Photon Coupling in a Nanographene Filled Microcavity

Optics 2017-09-15 v1

Abstract

Dibenzo[\emph{hi,st}]ovalene (DBOV) - a quasi-zero-dimensional `nanographene' - displays strong, narrow, and well-defined optical-absorption transitions at room temperature. On placing a DBOV-doped polymer film into an optical microcavity, we demonstrate strong coupling of the \textbf{0 \rightarrow 0'} electronic and \textbf{0 \rightarrow 1'} vibrational transitions to a confined cavity mode, with coupling energies of 104 meV and 40 meV, respectively. Photoluminescence measurements indicate that the polariton population is distributed between the lower and middle polariton branches at energies approximately coincident with the emission of the DBOV, indicating polariton population via an optical pumping mechanism.

Keywords

Cite

@article{arxiv.1709.04499,
  title  = {Strong Exciton-Photon Coupling in a Nanographene Filled Microcavity},
  author = {David M Coles and Qiang Chen and Lucas C Flatten and Jason M Smith and Klaus Müllen and Akimitsu Narita and David G Lidzey},
  journal= {arXiv preprint arXiv:1709.04499},
  year   = {2017}
}

Comments

A peer reviewed, updated and corrected version of this article appears in Nano Letters

R2 v1 2026-06-22T21:42:23.197Z