Wannier exciton dispersion curves of InxGa1-xAs/GaAs001 quantum well superlattice are obtained bycomputing exciton energies, for different K points in the corresponding Brillouin zone, using a variationalexciton envelope function model. The effective mass and the spatial dispersion of the exciton show strongvariations depending on energy bands and K points. Polariton dispersion curves are computed in the semiclassical framework by using a nonlocal exciton susceptibility and solving self-consistently the Schrödinger-Maxell equations. Photon dispersion curves of the one-dimensional photonic crystal, resulting from the periodicity of the dielectric constant in the superlattice, are also computed and reported in comparison with exciton and polariton bands. In order to mimic mesoscopic uniaxial photonic crystals, the versatility of InxGa1-xAs/GaAs(001) superlattice is highlighted by selected numerical examples.

Exciton and polariton dispersion curves of InxGa1-xAs/GaAs(001) superlattice quantum wells: Model calculation

Tomassini N.;Schiumarini D.;Pilozzi L.;D'Andrea A.
2007

Abstract

Wannier exciton dispersion curves of InxGa1-xAs/GaAs001 quantum well superlattice are obtained bycomputing exciton energies, for different K points in the corresponding Brillouin zone, using a variationalexciton envelope function model. The effective mass and the spatial dispersion of the exciton show strongvariations depending on energy bands and K points. Polariton dispersion curves are computed in the semiclassical framework by using a nonlocal exciton susceptibility and solving self-consistently the Schrödinger-Maxell equations. Photon dispersion curves of the one-dimensional photonic crystal, resulting from the periodicity of the dielectric constant in the superlattice, are also computed and reported in comparison with exciton and polariton bands. In order to mimic mesoscopic uniaxial photonic crystals, the versatility of InxGa1-xAs/GaAs(001) superlattice is highlighted by selected numerical examples.
2007
Istituto dei Sistemi Complessi - ISC
NONLINEAR-OPTICAL PROPERTIES
DIMENSIONAL SPACE
UNIAXIAL-STRESS
BINDING-ENERGY
SEMICONDUCTOR
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/30821
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