Control of propagation of spatially localized polariton wave packets in a Bragg mirror with embedded quantum wells
Academic Article
Publication Date:
2018
abstract:
We considered the nonlinear dynamics of Bragg polaritons in a specially designed stratified semiconductor structure with embedded quantum wells, which possesses a convex dispersion. The model for the ensemble of single periodically arranged quantum wells coupled with the Bragg photon fields has been developed. In particular, the generalized Gross-Pitaevskii equation with the non-parabolic dispersion has been obtained for the Bragg polariton wave function. We revealed a number of dynamical regimes for polariton wave packets resulting from competition of the convex dispersion and the repulsive nonlinearity effects. Among the regimes are spreading, breathing and soliton propagation. When the control parameters including the exciton-photon detuning, the matter-field coupling and the nonlinearity are manipulated, the dynamical regimes switch between themselves.
Iris type:
01.01 Articolo in rivista
Keywords:
Control parameters Dynamical regime Gross-Pitaevskii equation Nonlinearity effect Parabolic dispersion Photon fields Semiconductor structure Soliton propagation
List of contributors:
Kavokine, Alexis
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