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  • Advanced two-dimensional mode expansion method developed recently at the proposer’s laboratory will be extended and further improved. Its efficient application to plasmonic structures will be significantly boosted by the following modifications: a) incorporation of more efficient absorption boundary conditions (perfectly matched layers) based on complex coordination transformation, b) improving the convergence rate as the number of harmonics is increased by the application of the adaptive spatial resolution technique, and possibly also c) the extension of the method to 3-D structures. Other modelling methods (finite-difference and-or finite element method) will be used for efficient assessment, too. It is expected that COST Action 0803 will benefit from the proposed project mainly by its ability to contribute to answering very fundamental questions of plasmonics, namely to define, properly assess and promote the application possibilities of plasmonic waveguides, (partially) metallic photonic crys (en)
  • Rozvoj vektorových metod numerického modelování plazmonických vlnovodných struktur. Analýza a optimalizace struktur specifikovaných v rámci pracovní skupiny WG1 %22Information technologies%22. Aktivní účast ve výboru pro VŠ výchovu akce COST 0803.
Title
  • Analysis nad optimization of properties of metallic nanostructures for information technologies (en)
  • Analýza a optimalizace vlastností fotonických kovových nanostruktur pro informační technologie
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  • OC09061
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  • plasmonics; numerical modelling; theory of optical waveguides; surface plasmon; localized plasmon; lokalizovaný plazmon; metal nanostructures; nanoparticles. (en)
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  • Original method for numerical analysis of 3D photonic and plasmonic structures has been developed by using of optical fied expansion into harmonic functions. The developed computer code has been verified by comparison with independent algorithms. The method was published and applied to the analysis of several plasmonic structures potentially applicable in information technologies. (en)
  • V rámci projektu byla vyvinuta původní metoda numerické analýzy trojrozměrných fotonických a plazmonických struktur založená na rozkladu optických polí v harmonické funkce. Vyvinutý počítačový kód byl ověřen porovnáním výsledků s nezávislými algoritmy. Metoda byla publikována a využita k analýze několika plazmonických vínovodných struktur perspektivních pro aplikace v informačních technologiích. (cs)
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  • plasmonics
  • metal nanostructures
  • numerical modelling
  • surface plasmon
  • localized plasmon
  • lokalizovaný plazmon
  • theory of optical waveguides
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