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arxiv: 1611.00053 · v2 · pith:WQ4XS73Wnew · submitted 2016-10-31 · ❄️ cond-mat.mes-hall · physics.optics

Photon echo in exciton-plasmon nanomaterials: a time-dependent signature of strong coupling

classification ❄️ cond-mat.mes-hall physics.optics
keywords couplingexciton-plasmonechophotonstrongconditionsundercoupled
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We investigate the dynamics of photon echo exhibited by exciton-plasmon systems under strong coupling conditions. Using a self-consistent model based on coupled Maxwell-Bloch equations we investigate femtosecond time dynamics of ensembles of interacting molecules optically coupled to surface plasmon supporting materials. It is shown that observed photon echoes under two pulse pump-probe sequence are highly dependent on various material parameters such as molecular concentration and periodicity. Simulations of photon echoes in exciton-plasmon materials reveal a unique signature of the strong exciton-plasmon coupling, namely a double-peak structure in spectra of recorded echo signals. This phenomenon is shown to be related to hybrid states (upper and lower polaritons) in exciton-plasmon systems under strong coupling conditions. It is also demonstrated that the double-peak echo is highly sensitive to mild deviations of the coupling from resonant conditions making it a great tool for ultrafast probes.

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