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Discrete sources analysis of the correlation between surface plasmon resonance and extraordinary optical transmission
The discrete sources method is adapted to analyze the scattered energy distribution in the entire space in the problem of diffraction by an inhomogeneity in a film. The relation between extraordinary optical transmission through a nanometric film and surface plasmon resonance is studied numerically....
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Published in: | Computational mathematics and mathematical physics 2010-03, Vol.50 (3), p.509-514 |
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container_title | Computational mathematics and mathematical physics |
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creator | Grishina, N. V. Eremin, Yu. A. Sveshnikov, A. G. |
description | The discrete sources method is adapted to analyze the scattered energy distribution in the entire space in the problem of diffraction by an inhomogeneity in a film. The relation between extraordinary optical transmission through a nanometric film and surface plasmon resonance is studied numerically. It is shown that these phenomena are closely correlated. |
doi_str_mv | 10.1134/S0965542510030115 |
format | article |
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subjects | Approximation Biosensors Combinatorics Computational mathematics Computational Mathematics and Numerical Analysis Mathematical models Mathematics Mathematics and Statistics Metals Nanostructured materials Numerical analysis Physics Symmetry Thin films |
title | Discrete sources analysis of the correlation between surface plasmon resonance and extraordinary optical transmission |
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