
Anderson localization of light in a colloidal suspension (TiO 2 @silica)
2015; Royal Society of Chemistry; Volume: 8; Issue: 21 Linguagem: Inglês
10.1039/c5nr07540h
ISSN2040-3372
AutoresE. Jiménez, Iran F. da Silva, Valdeci Mestre, Paulo C. de Oliveira, Wagner M. Faustino, Gilberto F. de Sá,
Tópico(s)Quantum optics and atomic interactions
ResumoIn recent years, there has been dramatic progress in the photonics field in disordered media, ranging from applications in solar collectors, photocatalyzers, random lasing, and other novel photonic functions, to investigations into fundamental topics, such as light confinement and other phenomena involving photon interactions. This paper reports several pieces of experimental evidence of localization transition in a strongly disordered scattering medium composed of a colloidal suspension of core-shell nanoparticles (TiO2@silica) in ethanol solution. We demonstrate the crossover from a diffusive transport to a localization transition regime as the nanoparticle concentration is increased, and that an enhanced absorption effect arises at localization transition.
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