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Dive into the research topics where Armando Genco is active.

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Featured researches published by Armando Genco.


Light-Science & Applications | 2017

High-speed flow of interacting organic polaritons

Giovanni Lerario; Dario Ballarini; Antonio Fieramosca; Alessandro Cannavale; Armando Genco; Federica Mangione; Salvatore Gambino; Lorenzo Dominici; Milena De Giorgi; Giuseppe Gigli; D. Sanvitto

The strong coupling of an excitonic transition with an electromagnetic mode results in composite quasi-particles called exciton polaritons, which have been shown to combine the best properties of their individual components in semiconductor microcavities. However, the physics and applications of polariton flows in organic materials and at room temperature are still unexplored because of the poor photon confinement in such structures. Here, we demonstrate that polaritons formed by the hybridization of organic excitons with a Bloch surface wave are able to propagate for hundreds of microns showing remarkable third-order nonlinear interactions upon high injection density. These findings pave the way for the study of organic nonlinear light–matter fluxes and for a technologically promising route of the realization of dissipation-less on-chip polariton devices operating at room temperature.


Applied Physics Letters | 2014

Ultrastrong light-matter coupling in electrically doped microcavity organic light emitting diodes

Marco Mazzeo; Armando Genco; Salvatore Gambino; Dario Ballarini; Federica Mangione; O. Di Stefano; Salvatore Patanè; Salvatore Savasta; D. Sanvitto; Giuseppe Gigli

The coupling of the electromagnetic field with an electronic transition gives rise, for strong enough light-matter interactions, to hybrid states called exciton-polaritons. When the energy exchanged between light and matter becomes a significant fraction of the material transition energy an extreme optical regime called ultrastrong coupling (USC) is achieved. We report a microcavity embedded p-i-n monolithic organic light emitting diode working in USC, employing a thin film of squaraine dye as active layer. A normalized coupling ratio of 30% has been achieved at room temperature. These USC devices exhibit a dispersion-less angle-resolved electroluminescence that can be exploited for the realization of innovative optoelectronic devices. Our results may open the way towards electrically pumped polariton lasers.


Journal of Physics D | 2015

Very low roughness MAPLE-deposited films of a light emitting polymer: an alternative to spin coating

A.P. Caricato; M. Cesaria; Chiara Leo; Marco Mazzeo; Armando Genco; Sonia Carallo; T. Tunno; Andrea Massafra; Giuseppe Gigli; M. Martino

The matrix assisted pulsed laser evaporation (MAPLE) technique is emerging as an alternative route to conventional deposition methods of organic materials (solution-phase and thermal evaporation approaches). However, the high surface roughness of the films deposited by MAPLE makes this technique not compatible with applications in electronics and photonics. In this paper we report the deposition of MAPLE-films of a green light emitting polymer, commercially named ADS125GE, with remarkable low roughness values, down to about 10 nm at the thickness conventionally used in photonic devices (~40 nm). This issue is discussed as a function of polymer concentration, target-substrate distance and substrate rotation based on AFM topography images, roughness estimation and optical (absorption and luminescent) measurements. In addition we have fabricated an organic light emitting diode with this technique using the best deposition parameters which guarantee the lowest roughness. These results open the way to MAPLE applications in organic photonics and opto-electronics.


ACS Photonics | 2014

Exploring Light–Matter Interaction Phenomena under Ultrastrong Coupling Regime

Salvatore Gambino; Marco Mazzeo; Armando Genco; Omar Di Stefano; Salvatore Savasta; Salvatore Patanè; Dario Ballarini; Federica Mangione; Giovanni Lerario; D. Sanvitto; Giuseppe Gigli


Organic Electronics | 2013

High efficiency ITO-free flexible white organic light-emitting diodes based on multi-cavity technology

Marco Mazzeo; Fabrizio Mariano; Armando Genco; Sonia Carallo; Giuseppe Gigli


Advanced electronic materials | 2016

Fully Vapor-Deposited Heterostructured Light-Emitting Diode Based on Organo-Metal Halide Perovskite

Armando Genco; Fabrizio Mariano; Sonia Carallo; Valentino L. P. Guerra; Salvatore Gambino; Daniela Simeone; Andrea Listorti; Silvia Colella; Giuseppe Gigli; Marco Mazzeo


Advanced Optical Materials | 2014

Polariton-Induced Enhanced Emission from an Organic Dye under the Strong Coupling Regime

Dario Ballarini; Milena De Giorgi; Salvatore Gambino; Giovanni Lerario; Marco Mazzeo; Armando Genco; Gianluca Accorsi; Carlo Giansante; Silvia Colella; Stefania D'Agostino; Paolo Cazzato; D. Sanvitto; Giuseppe Gigli


ACS Photonics | 2015

Subdiffraction Light Concentration by J-Aggregate Nanostructures

Adriano Cacciola; Claudia Triolo; Omar Di Stefano; Armando Genco; Marco Mazzeo; Rosalba Saija; Salvatore Patanè; Salvatore Savasta


Applied Materials Today | 2015

Ultrastrong light-matter coupling in electroluminescent organic microcavities

Salvatore Gambino; Armando Genco; Gianluca Accorsi; Omar Di Stefano; Salvatore Savasta; Salvatore Patanè; Giuseppe Gigli; Marco Mazzeo


Journal of Materials Chemistry C | 2016

White multi-layered polymer light emitting diode through matrix assisted pulsed laser evaporation

Fabrizio Mariano; A.P. Caricato; G. Accorsi; C. Leo; M. Cesaria; Sonia Carallo; Armando Genco; D. Simeone; T. Tunno; M. Martino; G. Gigli; Marco Mazzeo

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Giuseppe Gigli

Istituto Italiano di Tecnologia

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Salvatore Gambino

Istituto Italiano di Tecnologia

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D. Sanvitto

Autonomous University of Madrid

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Dario Ballarini

Autonomous University of Madrid

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