Conventional two-dimensional (2D) plasmonic arrays provide electric field intensity enhancement in the plane, typically with a surface coverage around 50% in the plan-view. Here, we show nanoplasmonic three-dimensional (3D) surfaces with 100% surface coverage enabling strong surface-normal field enhancement. Experimental measurements are found to agree well with the full electromagnetic solution. Along with the surface-normal localization when using the plasmonic 3D-surface, observed maximum field enhancement is 7.2-fold stronger in the 3D-surface than that of the 2D counterpart structure. 3D-plasmonic nonplanar surfaces provide the ability to generate volumetric field enhancement, possibly useful for enhanced plasmonic coupling and interac...
We report the properties of plasmons in dense planar arrays of silver single and double nanostructur...
© 2016 Bentham Science Publishers. Background: The performance of plasmonic nanostructures is based ...
Surface plasmons are excited at a metal/dielectric interface, through the coupling between conductio...
Conventional 2D plasmonic structures, with surface coverage ∼50%, provide field enhancement in the p...
Conventional plasmonic structures provide field enhancement in the plane. The proposed nanoplasmonic...
Cataloged from PDF version of article.Conventional two-dimensional (2D) plasmonic arrays provide ele...
Ankara : The Department of Electrical and Electronics Engineering and the Graduate School of Enginee...
The exploitation of surface plasmon polaritons has been mostly limited to the visible and near infr...
Background: The performance of plasmonic nanostructures is based on optical properties and the inten...
The coupling of propagating surface plasmon waves and localized plasmon oscillations in nanostructur...
The local electric field enhancements of overlapping Ag triangular nanoplates are investigated using...
International audienceTetrahedral nanopyramids made of silver and gold over ITO/glass surfaces are f...
This paper provides direct evidence for the role of surface plasmons in the enhanced optical transmi...
Plasmonic interactions in a well-defined array of metallic nanoparticles can lead to interesting opt...
In this report we present our study of interaction of light carrying OAM (Orbital Angular Momentum) ...
We report the properties of plasmons in dense planar arrays of silver single and double nanostructur...
© 2016 Bentham Science Publishers. Background: The performance of plasmonic nanostructures is based ...
Surface plasmons are excited at a metal/dielectric interface, through the coupling between conductio...
Conventional 2D plasmonic structures, with surface coverage ∼50%, provide field enhancement in the p...
Conventional plasmonic structures provide field enhancement in the plane. The proposed nanoplasmonic...
Cataloged from PDF version of article.Conventional two-dimensional (2D) plasmonic arrays provide ele...
Ankara : The Department of Electrical and Electronics Engineering and the Graduate School of Enginee...
The exploitation of surface plasmon polaritons has been mostly limited to the visible and near infr...
Background: The performance of plasmonic nanostructures is based on optical properties and the inten...
The coupling of propagating surface plasmon waves and localized plasmon oscillations in nanostructur...
The local electric field enhancements of overlapping Ag triangular nanoplates are investigated using...
International audienceTetrahedral nanopyramids made of silver and gold over ITO/glass surfaces are f...
This paper provides direct evidence for the role of surface plasmons in the enhanced optical transmi...
Plasmonic interactions in a well-defined array of metallic nanoparticles can lead to interesting opt...
In this report we present our study of interaction of light carrying OAM (Orbital Angular Momentum) ...
We report the properties of plasmons in dense planar arrays of silver single and double nanostructur...
© 2016 Bentham Science Publishers. Background: The performance of plasmonic nanostructures is based ...
Surface plasmons are excited at a metal/dielectric interface, through the coupling between conductio...