Controlling the number of dye molecules on metallic nanoparticles, which in turn affects the magnitude of Rabi splitting energy, is crucial for obtaining hybrid metal core-organic shell nanoparticles with tunable optical properties in the visible spectrum since the magnitude of the Rabi splitting energy directly determines the strength of the coupling between plasmonic nanoparticles and dye molecules. In this work, we present a new method for the synthesis of plexcitonic nanoparticles, and thus we are able to control the number of dye molecules self-assembled on Ag nanoprisms (Ag NPs) by adjusting the concentration of dye molecules used in the synthesis. Indeed, individual dye molecules self-assemble into J-aggregates on Ag NPs. Thus, in th...
Strong plasmon-exciton coupling between tightly-bound excitons in organic molecular semiconductors a...
Strong coupling of plasmons and excitons can form hybrid states, the so-called “plexcitons”. Althoug...
We report on the experimental and theoretical investigations of enhancing the optical absorption of ...
Controlling the number of dye molecules on metallic nanoparticles, which in turn affects the magnitu...
We report a ternary-coupled plasmonic system consisting of excitons of J-aggregated dye, localized s...
We investigate ultrafast energy transfer between excitons and plasmons in ensembles of core-shell ty...
Cataloged from PDF version of article.We investigate ultrafast energy transfer between excitons and ...
Hybrid nanostructures that couple plasmon and exciton resonances generate hybridized energy states, ...
Plasmon–exciton polaritons arise from the coherent coupling of the localized plasmon of metal nanopa...
Plasmon–exciton polaritons arise from the coherent coupling of the localized plasmon of metal nanopa...
Strong exciton–plasmon interaction enables effective control of the photonic properties of hybrid or...
Cataloged from PDF version of article.We report on the experimental and theoretical investigations o...
The achievement of an ultrastrong coupling regime between surface plasmon modes generated by gold co...
Strong coupling of plasmons and excitons can form hybrid states, the so-called "plexcitons". Althoug...
Noble metallic nanoparticles, which support localized surface plasmon resonances (LSPR), offer a var...
Strong plasmon-exciton coupling between tightly-bound excitons in organic molecular semiconductors a...
Strong coupling of plasmons and excitons can form hybrid states, the so-called “plexcitons”. Althoug...
We report on the experimental and theoretical investigations of enhancing the optical absorption of ...
Controlling the number of dye molecules on metallic nanoparticles, which in turn affects the magnitu...
We report a ternary-coupled plasmonic system consisting of excitons of J-aggregated dye, localized s...
We investigate ultrafast energy transfer between excitons and plasmons in ensembles of core-shell ty...
Cataloged from PDF version of article.We investigate ultrafast energy transfer between excitons and ...
Hybrid nanostructures that couple plasmon and exciton resonances generate hybridized energy states, ...
Plasmon–exciton polaritons arise from the coherent coupling of the localized plasmon of metal nanopa...
Plasmon–exciton polaritons arise from the coherent coupling of the localized plasmon of metal nanopa...
Strong exciton–plasmon interaction enables effective control of the photonic properties of hybrid or...
Cataloged from PDF version of article.We report on the experimental and theoretical investigations o...
The achievement of an ultrastrong coupling regime between surface plasmon modes generated by gold co...
Strong coupling of plasmons and excitons can form hybrid states, the so-called "plexcitons". Althoug...
Noble metallic nanoparticles, which support localized surface plasmon resonances (LSPR), offer a var...
Strong plasmon-exciton coupling between tightly-bound excitons in organic molecular semiconductors a...
Strong coupling of plasmons and excitons can form hybrid states, the so-called “plexcitons”. Althoug...
We report on the experimental and theoretical investigations of enhancing the optical absorption of ...