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- W2964242555 endingPage "2299" @default.
- W2964242555 startingPage "2299" @default.
- W2964242555 abstract "Plasmonic and dielectric Mie resonances in subwavelength nanostructures provide an efficient way to manipulate light below the diffraction limit that has fostered the growth of plasmonics and nanophotonics. Plasmonic resonances have been mainly related with the excitation of free charge carriers, initially in metals, and dielectric Mie resonances have been identified in Si nanostructures. Remarkably, although much less studied, semi-metals, semiconductors and topological insulators of the p-block enable plasmonic resonances without free charge carriers and dielectric Mie resonances with enhanced properties compared with Si. In this review, we explain how interband transitions in these materials show a major role in this duality. We evaluate the plasmonic and Mie performance of nanostructures made of relevant p-block elements and compounds, especially Bi, and discuss their promising potential for applications ranging from switchable plasmonics and nanophotonics to energy conversion, especially photocatalysis." @default.
- W2964242555 created "2019-07-30" @default.
- W2964242555 creator A5030307912 @default.
- W2964242555 creator A5045609443 @default.
- W2964242555 date "2017-06-09" @default.
- W2964242555 modified "2023-10-17" @default.
- W2964242555 title "Interband transitions in semi-metals, semiconductors, and topological insulators: a new driving force for plasmonics and nanophotonics [Invited]" @default.
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