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- W2069136197 abstract "We present a powerful technique that generates the complete normal-mode representation for the two-dimensional quasistatic response of any finite cluster of nonintersecting cylinders. We initially study two particular structures, a rectangular and then a triangular arrangement of cylinders. In each case a superposition technique involving two coordinate frames is used to obtain eigenfunction expansions for the induced electrostatic potential. Imposition of boundary conditions at each cylinder surface generates a system of equations for the expansion coefficients in which optical and geometric factors can be trivially separated. This produces a so-called structure matrix whose eigenvalues determine the resonance positions for the total response. The weights for these uncoupled and independent resonances are also readily calculated. Predicted results for the two chosen arrangements are then given. We conclude by showing how the technique is extended to cover general finite clusters of nonintersecting cylinders." @default.
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- W2069136197 date "1998-07-01" @default.
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- W2069136197 title "Normal-mode decomposition for the optical response of cylinder clusters" @default.
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- W2069136197 doi "https://doi.org/10.1103/physreve.58.1101" @default.
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