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scopus(5)
Scaling of optical forces on Au-PEG core-shell nanoparticles
ArticleAbstract: Optical trapping of hybrid core-shell gold-polymer particles is studied. Optical forces are measuredPalabras claves:Autores:Amendola V., Cherlakola A.R., Donato M.G., Gucciardi P.G., Maragó O.M., Maria Antonia Iatì, Saija R., Scaramuzza S., Spadaro D.Fuentes:scopusPlasmon-enhanced optical trapping of gold nanoaggregates with selected optical properties
ArticleAbstract: We show how light forces can be used to trap gold nanoaggregates of selected structure and optical pPalabras claves:gold nanoaggregates, laser ablation synthesis, optical trapping theory, plasmon-enhanced optical trappingAutores:Amendola V., Borghese F., Cacciola A., Cavallaro E., Compagnini G., Denti P., Gucciardi P.G., Maragó O.M., Maria Antonia Iatì, Meneghetti M., Messina E., Saija R.Fuentes:scopusPlasmon-enhanced optical trapping of metal nanoparticles: Force calculations and light-driven rotations of nanoaggregates
Conference ObjectAbstract: We investigate experimentally and theoretically plasmon-enhanced optical trapping of metal nanopartiPalabras claves:Light scattering theory, Light-driven rotations, Metal nanoparticles, Optical trapping, Plasmon enhancementAutores:Amendola V., Borghese F., Compagnini G., Denti P., Gucciardi P.G., Jones P.H., Maragó O.M., Maria Antonia Iatì, Meneghetti M., Messina E., Saija R.Fuentes:scopusSuperior plasmon absorption in iron-doped gold nanoparticles
ArticleAbstract: Although the excitation of localized surface plasmons is associated with enhanced scattering and absPalabras claves:Autores:Amendola V., Maragó O.M., Maria Antonia Iatì, Saija R.Fuentes:scopusSurface plasmon resonance in gold nanoparticles: A review
ReviewAbstract: In the last two decades, plasmon resonance in gold nanoparticles (Au NPs) has been the subject of inPalabras claves:Autores:Amendola V., Frasconi M., Maragó O.M., Maria Antonia Iatì, Pilot R.Fuentes:scopus