Semiconductor nanowires (NWs) possess a fascinating ability to efficiently collect and trap light into a sub-wavelength volume due to the occurrence of leaky mode resonances. The same confinement ability is manifested by metal nanostructures thanks to the excitation of surface plasmons. Combining the two systems, we show how light absorption in individual NWs can be spectrally tailored and enhanced by decorating them with metal nanoparticles. This is demonstrated by means of scanning photocurrent measurements on individual NWs and interpreted by full-field simulations
Cataloged from PDF version of article.Nanowires play a crucial role in the development of new genera...
III-V semiconductor nanowires behave as optical antennae because of their shape anisotropy and high ...
The scattering from metal nanoparticles near their localized plasmon resonance is a promising way o...
III-V semiconductor nanowires behave as optical antennae because of their shape anisotropy and high ...
Metallic and dielectric nanostructures have highly tunable resonances that have been used to increas...
Semiconductor nanowires show a great deal of promise for applications in a widerange of important fi...
Both a single III-V semiconductor nanowire and an array of such nanowires have shown promise for sol...
The optical properties of metal nanoparticle (NP)-coated silicon nanowires (Si NWs) are theoreticall...
textMetallic nanostructures such as nanoparticles, nanowires and nanoapertures exhibit extraordinary...
The two tasks performed by a solar cell are absorption of sunlight and collection of the photogenera...
In this paper, we propose a plasmon-enhanced solar cell structure based on a GaAs nanowire array dec...
Funding Information: Funding: This research was funded by the Academy of Finland Flagship Program, P...
The conversion efficiency of a solar panel is the most important lever in the cost of electricity it...
ABSTRACT: Semiconductor nanowires, due to their unique electronic, optical, and chemical properties,...
We have studied the interaction of light with an array of vertically oriented III-V semiconductor na...
Cataloged from PDF version of article.Nanowires play a crucial role in the development of new genera...
III-V semiconductor nanowires behave as optical antennae because of their shape anisotropy and high ...
The scattering from metal nanoparticles near their localized plasmon resonance is a promising way o...
III-V semiconductor nanowires behave as optical antennae because of their shape anisotropy and high ...
Metallic and dielectric nanostructures have highly tunable resonances that have been used to increas...
Semiconductor nanowires show a great deal of promise for applications in a widerange of important fi...
Both a single III-V semiconductor nanowire and an array of such nanowires have shown promise for sol...
The optical properties of metal nanoparticle (NP)-coated silicon nanowires (Si NWs) are theoreticall...
textMetallic nanostructures such as nanoparticles, nanowires and nanoapertures exhibit extraordinary...
The two tasks performed by a solar cell are absorption of sunlight and collection of the photogenera...
In this paper, we propose a plasmon-enhanced solar cell structure based on a GaAs nanowire array dec...
Funding Information: Funding: This research was funded by the Academy of Finland Flagship Program, P...
The conversion efficiency of a solar panel is the most important lever in the cost of electricity it...
ABSTRACT: Semiconductor nanowires, due to their unique electronic, optical, and chemical properties,...
We have studied the interaction of light with an array of vertically oriented III-V semiconductor na...
Cataloged from PDF version of article.Nanowires play a crucial role in the development of new genera...
III-V semiconductor nanowires behave as optical antennae because of their shape anisotropy and high ...
The scattering from metal nanoparticles near their localized plasmon resonance is a promising way o...