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- W2104141166 abstract "Among the most popular approaches used for simulating plasmonic systems, the discrete dipole approximation suffers from poorly scaling volume discretization and limited near-field accuracy. We demonstrate that transformation to a surface integral formulation improves scalability and convergence and provides a flexible geometric approximation allowing, e.g., to investigate the influence of fabrication accuracy. The occurring integrals can be solved quasi-analytically, permitting even rapidly changing fields to be determined arbitrarily close to a scatterer. This insight into the extreme near-field behavior is useful for modeling closely packed particle ensembles and to study “hot spots” in plasmonic nanostructures used for plasmon-enhanced Raman scattering." @default.
- W2104141166 created "2016-06-24" @default.
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- W2104141166 date "2009-03-06" @default.
- W2104141166 modified "2023-10-14" @default.
- W2104141166 title "Surface integral formulation for 3D simulations of plasmonic and high permittivity nanostructures" @default.
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- W2104141166 doi "https://doi.org/10.1364/josaa.26.000732" @default.
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