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Battling absorptive losses by plasmon-exciton coupling in multimeric nanostructures
ArticleAbstract: The strong inherent optical losses present in plasmonic nanostructures significantly limit their tecPalabras claves:Autores:Bartolino R., Dhama R., Elkabbash M., Hosseinzadeh A., Luca A.D.E., Melissa Infusino, Rahimi Rashed A., Ravaine S., Strangi G.Fuentes:googlescopusDouble strong exciton-plasmon coupling in gold nanoshells infiltrated with fluorophores
ArticleAbstract: We report on the broadband resonant energy transfer processes observed in dye doped gold nanoshells,Palabras claves:Autores:Barois P., Coutant C., Dhama R., Luca A.D.E., Melissa Infusino, Rashed A.R., Ravaine S., Strangi G.Fuentes:googlescopusGain functionalized core-shell nanoparticles: The way to selectively compensate absorptive losses
ArticleAbstract: We experimentally demonstrate that gain materials properly encapsulated into the shell surrounding mPalabras claves:Autores:Alessandro Veltri, Aradian A., Ferrie M., La Deda M., Luca A.D.E., Melissa Infusino, Rashed A.R., Ravaine S., Scaramuzza N., Strangi G.Fuentes:googlescopusGain-assisted plasmonic/dielectric nanoshells in optical tweezers: Non-linear optomechanics and thermal effects
Conference ObjectAbstract: We study theoretically the optomechanics of a dyed dielectric/metallic nanoshell in Optical TweezersPalabras claves:Autores:Alessandro Veltri, Jonathan Sánchez, Maragó O.M., Maria Antonia Iatì, Melissa Infusino, Patti F., Polimeno P., Saija R., Volpe G.Fuentes:googlescopusErratum: Gain functionalized core-shell nanoparticles: The way to selectively compensate absorptive losses (Journal of Materials Chemistry (2012) 22 (8846-8852) DOI: 10.1039/C2JM30341H)
OtherAbstract:Palabras claves:Autores:Alessandro Veltri, Aradian A., Ferrie M., La Deda M., Luca A.D.E., Melissa Infusino, Rashed A.R., Ravaine S., Scaramuzza N., Strangi G.Fuentes:scopusInhomogeneous photopolymerization in multicomponent media
ArticleAbstract:Palabras claves:Autores:Alessandro Veltri, Caputo R., De Sio L., Melissa Infusino, Sukhov A.V., Umeton C.P.Fuentes:googlescopusOptical and electrical characterization of a gold nanoparticle dispersion in a chiral liquid crystal matrix
ArticleAbstract: We report on the effect of gold nanoparticle (Au NP) dispersion in a chiral nematic liquid crystal (Palabras claves:Autores:Ciuchi F., Ionescu A.T., Luca A.D.E., Melissa Infusino, Scaramuzza N., Strangi G.Fuentes:googlescopusLoss-Mitigated Collective Resonances in Gain-Assisted Plasmonic Mesocapsules
ArticleAbstract: (Graph Presented). Inherent optical losses of plasmonic materials represent a crucial issue for optoPalabras claves:Active plasmonics, collective resonances, loss compensation, Nanostructured systems, pump-probe spectroscopyAutores:Alessandro Veltri, Correa-Duarte M.A., Dhama R., Luca A.D.E., Melissa Infusino, Strangi G., Vázquez-Vázquez C.Fuentes:googlescopusPlasmon mediated super-absorber flexible nanocomposites for metamaterials
ArticleAbstract: A flexible host has been selected to achieve, for the first time, functional nanocomposites based onPalabras claves:Autores:Curri M.L., Depalo N., Fanizza E., La Deda M., Luca A.D.E., Melissa Infusino, Rashed A.R., Strangi G., Striccoli M.Fuentes:googlescopusPlasmon-Exciton Resonant Energy Transfer: Across Scales Hybrid Systems
ReviewAbstract: The presence of an excitonic element in close proximity of a plasmonic nanostructure, under certainPalabras claves:Autores:Elkabbash M., Luca A.D.E., Melissa Infusino, Rashed A.R., Sreekanth K.V., Strangi G.Fuentes:googlescopus