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Mathematical analysis of plasmonic resonances for nanoparticles: the full Maxwell equations
(2015)SAM Research ReportIn this paper we use the full Maxwell equations for light propagation in order to analyze plasmonic resonances for nanoparticles. We mathematically define the notion of plasmonic resonance and analyze its shift and broadening with respect to changes in size, shape, and arrangement of the nanoparticles, using the layer potential techniques associated with the full Maxwell equations. We present an effective medium theory for resonant plasmonic ...Report -
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Shape reconstruction of nanoparticles from their associated plasmonic resonances
(2016)Research ReportWe prove by means of a couple of examples that plasmonic resonances can be used on one hand to classify shapes of nanoparticles with real algebraic boundaries and on the other hand to reconstruct the separation distance between two nanoparticles from measurements of their first collective plasmonic resonances. To this end, we explicitly compute the spectral decompositions of the Neumann-Poincar´e operators associated with a class of ...Report -
Reconstructing fine details of small objects by using plasmonic spectroscopic data. Part II: The strong interaction regime
(2017)SAM Research ReportReport -
Mathematical and Computational Methods in Photonics and Phononics
(2017)SAM Research ReportReport -
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Field expansions for systems of strongly coupled plasmonic nanoparticle
(2017)SAM Research ReportReport -
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Effective medium theory for acoustic waves in bubbly fluids near Minnaert resonant frequency
(2016)Research ReportWe derive an effective medium theory for acoustic wave propagation in bubbly fluid near Minnaert resonant frequency. We start with a multiple scattering formulation of the scattering problem of an incident wave by a large number of identical small bubbles in a homogeneous fluid. Under certain conditions on the configuration of the bubbles, we justify the point interaction approximation and establish an effective medium theory for the ...Report