Bragg diffraction of microcavity polaritons by a surface acoustic wave
Abstract
Bragg scattering of polaritons by a coherent acoustic wave is mediated and strongly enhanced by the relevant exciton states resonant with the acoustic and optic fields simultaneously. In this case, in sharp contrast with conventional acousto-optics, the resonantly enhanced Bragg spectra reveal the multiple orders of diffracted light, i.e., a Brillouin band structure of parametrically driven polaritons can be directly visualized. We analyze the above scheme for polaritons in (GaAs) semiconductor microcavities driven by a surface acoustic wave (SAW) and show that for realistic values of the SAW, GHz and W/cm, the main acoustically-induced band gap in the polariton spectrum can be as large as meV, and the Bragg replicas up to can be observed.
Keywords
Cite
@article{arxiv.cond-mat/0503583,
title = {Bragg diffraction of microcavity polaritons by a surface acoustic wave},
author = {K. Cho and K. Okumoto and N. I. Nikolaev and A. L. Ivanov},
journal= {arXiv preprint arXiv:cond-mat/0503583},
year = {2009}
}
Comments
5 pages, 3 figures