| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 4609415 | Journal of Differential Equations | 2016 | 55 Pages | 
Abstract
												In 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 systems and derive a condition on the volume fraction under which the Maxwell–Garnett theory is valid at plasmonic resonances.
Keywords
												
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													Physical Sciences and Engineering
													Mathematics
													Analysis
												
											Authors
												Habib Ammari, Matias Ruiz, Sanghyeon Yu, Hai Zhang, 
											