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Optical properties of microcavity polaritons
Authors:Vincenzo Savona  Carlo Piermarocchi  Antonio Quattropani  Paolo Schwendimann  Francesco Tassone
Affiliation:1. Institut de Physique Théorique, Ecole Polytechnique Fédérate , CH-1015, Lausanne, Switzerland;2. Defense Procurement and Technology Agency, System Analysis Division , CH-3003, Bern, Switzerland;3. Ginzton Laboratory, Stanford University , Stanford, CA 94305, USA
Abstract:This work contains a theoretical analysis of the optical properties of semiconductor quantum wells embedded in planar Fabry-Perot microcavities. In particular, the properties of the system in correspondence to the excitonic transition are studied by means of the polariton formalism. The polariton states in microcavities are derived and the polar-iton dispersion is presented. Particular emphasis is put on the existence of two well distinct regimes depending on the exciton and cavity parameters: strong coupling and weak coupling regime. The main experimental results are reviewed and compared with the prediction of the theory. After the polariton states have been characterized, the optical response of the system is discussed, with particular attention to the photoluminescence measurements. The polariton formation and relaxation through phonon scattering and the effect of the exciton inhomogeneous broadening are considered and, finally, a phe-nomenological model for the polariton photoluminescence spectra is presented.
Keywords:Quantum well  Fabry-Pérot microcavity  Excitonic transition  Polariton state  Optical response  Phonon scattering  Polariton photoluminescence
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