We report the observation of strong exciton-photon coupling in a ZnSe based microcavity fabricated using epitaxial liftoff. Molecular beam epitaxial grown ZnSe/Zn0.9Cd0.1Se quantum wells with a one wavelength optical length at the exciton emission were transferred to a SiO2/Ta2O5 mirror with a reflectance of 96% to form finesse matched microcavities. Analysis of our angle resolved transmission spectra reveals key features of the strong coupling regime: anticrossing with a normal mode splitting of 23.6meV at 20K; composite evolution of the lower and upper polaritons; and narrowing of the lower polariton linewidth near resonance. The heavy hole exciton oscillator strength per quantum well is also deduced to be 1.78×1013cm−2.
@article{arxiv.physics/0703174,
title = {Exciton-photon coupling in a ZnSe based microcavity fabricated using epitaxial liftoff},
author = {A. Curran and J. K. Morrod and K. A. Prior and A. K. Kar and R. J. Warburton},
journal= {arXiv preprint arXiv:physics/0703174},
year = {2009}
}