Publication | Open Access
One dimensional resonant Fibonacci quasicrystals: noncanonical linear and canonical nonlinear effects
33
Citations
30
References
2009
Year
Peak ReflectivityEngineeringNonlinear OpticsCanonical Nonlinear EffectsIntegrable SystemNoncanonical LinearDifferent Average SpacingDetailed ExperimentalOptical PropertiesNonlinear Wave PropagationOscillation TheoryPhotonicsPhysicsQuantum DeviceNon-linear OpticApplied PhysicsNonlinear ResonanceQuantum Photonic DeviceOptoelectronicsNonlinear Oscillation
A detailed experimental and theoretical study of the linear and nonlinear optical properties of different Fibonacci-spaced multiple-quantum-well structures is presented. Systematic numerical studies are performed for different average spacing and geometrical arrangement of the quantum wells. Measurements of the linear and nonlinear (carrier density dependent) reflectivity are shown to be in good agreement with the computational results. As the pump pulse energy increases, the excitation-induced dephasing broadens the exciton resonances resulting in a disappearance of sharp features and reduction in peak reflectivity.
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