Optimal structures for classical wave localization: an alternative to the ioffe-regel criterion
Physical review. B, Condensed matter · 1988 · 120 citations · 16 references
Optimal StructuresEngineeringWave OpticClassical Wave LocalizationDielectric SpheresMicrolocal AnalysisLocalization TechniqueRayleigh ScatteringLocalizationWave TheoryIoffe-regel CriterionOptical PropertiesSpeaker LocalizationSignal ReconstructionComputational ElectromagneticsApproximation TheoryNanophotonicsPhysicsClassical OpticsInverse ProblemsUniform BackgroundSignal ProcessingBand StructureWave ScatteringApplied PhysicsLight ScatteringHigh-frequency Approximation
Using the Korringa-Kohn-Rostoker method we compute the band structure for a classical scalar wave scattering from a periodic array of dielectric spheres in a uniform background. The optimal volume filling fraction $f$ of spheres for the creation of a total gap in the density of states, and hence localization, is found to be approximately 11%. This gap persists for refractive index ratios as small as 2.8.
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