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- W2008341036 abstract "Rapid modeling of far-field Fano resonance supported by lattices of complex nanostructures is possible with the coupleddipole approximation (CDA) using point, dipole polarizability extrapolated from a higher order discrete dipoleapproximation (DDA). Fano resonance in nanostructured metamaterials has been evaluated with CDA for spheroids, forwhich an analytical form of particle polarizability exists. For complex structures with non-analytic polarizability, such asrings, higher order electrodynamic solutions must be employed at the cost of computation time. Point polarizability isdetermined from the DDA by summing individual polarizable volume elements from the modeled structure. Extractionof single nanoring polarizability from DDA permitted CDA analysis of nanoring lattices with a 40,000-fold reduction incomputational time over 1000 wavelengths. Maxima and minima of predicted Fano resonance energies were within 1%of full volume elements using the DDA. This modeling technique is amenable to other complex nanostructures whichexhibit primarily dipolar and/or quadrupolar resonance behavior. Rapid analysis of coupling between plasmons andphoton diffraction modes in lattices of nanostructures supports design of plasmonic enhancements in sustainable energyand biomedical devices." @default.
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- W2008341036 date "2014-09-10" @default.
- W2008341036 modified "2023-09-23" @default.
- W2008341036 title "Polarizability extraction for rapid computation of Fano resonance in nanoring lattices" @default.
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- W2008341036 doi "https://doi.org/10.1117/12.2061227" @default.
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