Cataloged from PDF version of article.Noble metals such as gold and silver have been extensively used for plasmonic applications due to their ability to support plasmons, yet they suffer from high intrinsic losses. Alternative plasmonic materials that offer low loss and tunability are desired for a new generation of efficient and agile devices. In this paper, atomic layer deposition (ALD) grown ZnO is investigated as a candidate material for plasmonic applications. Optical constants of ZnO are investigated along with figures of merit pertaining to plasmonic waveguides. We show that ZnO can alleviate the trade-off between propagation length and mode confinement width owing to tunable dielectric properties. In order to demonstrate plasmonic r...
International audienceThe size reduction in ZnO nanoparticles increases the presence of specific cry...
Using alternative plasmonic materials, we experimentally demonstrate gap plasmon resonances in metal...
peer-reviewedIn the past decade or two, the field of nanophotonics has seen rapid development, empow...
Noble metals such as gold and silver have been extensively used for plasmonic applications due to th...
Cataloged from PDF version of article.ZnO is an attractive material for both electrical and optical ...
We systematically study the optical spectra of ZnO grown by atomic-layer deposition as a function of...
Cataloged from PDF version of article.Plasmonics is one of the pillars of nanophotonics involving li...
Ankara : The Department of Electrical and Electronics Engineering and The Graduate School of Enginee...
Due to the high rate of optical losses and the extensive usage of noble metals, alternative plasmoni...
As alternatives to conventional metals, new plasmonic materials offer many advantages in the rapidly...
ZnO is an attractive material for both electrical and optical applications due to its wide bandgap o...
In order to demonstrate tunable absorption characteristics of ZnO, photodetection properties of ZnO ...
The ability to transform energy from electromagnetic radiation into oscillations of free electrons a...
Abstract The optical properties of aluminum-doped zinc oxide (AZO) thin films were calculated rapidl...
We report on the coupling of ZnO nanoparticles with plasmonic gold nanoislands in a solution process...
International audienceThe size reduction in ZnO nanoparticles increases the presence of specific cry...
Using alternative plasmonic materials, we experimentally demonstrate gap plasmon resonances in metal...
peer-reviewedIn the past decade or two, the field of nanophotonics has seen rapid development, empow...
Noble metals such as gold and silver have been extensively used for plasmonic applications due to th...
Cataloged from PDF version of article.ZnO is an attractive material for both electrical and optical ...
We systematically study the optical spectra of ZnO grown by atomic-layer deposition as a function of...
Cataloged from PDF version of article.Plasmonics is one of the pillars of nanophotonics involving li...
Ankara : The Department of Electrical and Electronics Engineering and The Graduate School of Enginee...
Due to the high rate of optical losses and the extensive usage of noble metals, alternative plasmoni...
As alternatives to conventional metals, new plasmonic materials offer many advantages in the rapidly...
ZnO is an attractive material for both electrical and optical applications due to its wide bandgap o...
In order to demonstrate tunable absorption characteristics of ZnO, photodetection properties of ZnO ...
The ability to transform energy from electromagnetic radiation into oscillations of free electrons a...
Abstract The optical properties of aluminum-doped zinc oxide (AZO) thin films were calculated rapidl...
We report on the coupling of ZnO nanoparticles with plasmonic gold nanoislands in a solution process...
International audienceThe size reduction in ZnO nanoparticles increases the presence of specific cry...
Using alternative plasmonic materials, we experimentally demonstrate gap plasmon resonances in metal...
peer-reviewedIn the past decade or two, the field of nanophotonics has seen rapid development, empow...