The use of circularly polarized beams in interferometric illumination of colloid sphere monolayers enables the direct fabrication of rectangular patterns composed of circular nanohole miniarrays in metal films. This paper presents a study on the spectral and near-field effects of complex rectangular patterns consisted of a central nanoring and slightly rotated satellite nanocrescents in azimuthal orientations, which promote coupling between localized and propagating plasmons. To inspect the localized modes separately, we investigate the spectral responses and near-field phenomena of hexagonal patterns composed of uniform nanorings and nanocrescents, which can be fabricated by a single, homogeneous, circularly polarized beam incident perpend...
Optical transmission through concentric circular nanoslits is studied in experiments and numerical s...
Chiral properties of plasmonic metasurfaces, especially related to different absorption of left and ...
Plasmonic nanocavities confine light in deep subwavelength volumes and in recent years have enabled ...
The use of circularly polarized beams in interferometric illumination of colloid sphere monolayers e...
Illumination of colloid sphere monolayers by circularly polarized beams enables the fabrication of c...
W. Andrew Murray, Simion Astilean, and William L. Barnes, Physical Review B, Vol. 69, article 165407...
In this work, metal nanoparticles produced by nanosphere lithography were studied in terms of their ...
Plasmonic nano-structures play a significant role in most recent photonic devices and applications. ...
Nanohole arrays in metal films allow extraordinary optical transmission (EOT); the phenomenon is hig...
The optical transmission and electric field distribution of plasmonic nanostructures dictate their p...
The tunable plasmon resonances of nanostructures with sharp features play an important role in the s...
This dissertation presents new advancements in the theory, design, and fabrication of nanoplasmonic ...
2D metasurfaces based on periodic nanoholes in metal have been proposed in various plasmonic platfor...
Light polarization drives many components of modern technology such as liquid crystal displays, depo...
Electromagnetic metasurfaces are broadly defined as optically thin layersthat are structured on the ...
Optical transmission through concentric circular nanoslits is studied in experiments and numerical s...
Chiral properties of plasmonic metasurfaces, especially related to different absorption of left and ...
Plasmonic nanocavities confine light in deep subwavelength volumes and in recent years have enabled ...
The use of circularly polarized beams in interferometric illumination of colloid sphere monolayers e...
Illumination of colloid sphere monolayers by circularly polarized beams enables the fabrication of c...
W. Andrew Murray, Simion Astilean, and William L. Barnes, Physical Review B, Vol. 69, article 165407...
In this work, metal nanoparticles produced by nanosphere lithography were studied in terms of their ...
Plasmonic nano-structures play a significant role in most recent photonic devices and applications. ...
Nanohole arrays in metal films allow extraordinary optical transmission (EOT); the phenomenon is hig...
The optical transmission and electric field distribution of plasmonic nanostructures dictate their p...
The tunable plasmon resonances of nanostructures with sharp features play an important role in the s...
This dissertation presents new advancements in the theory, design, and fabrication of nanoplasmonic ...
2D metasurfaces based on periodic nanoholes in metal have been proposed in various plasmonic platfor...
Light polarization drives many components of modern technology such as liquid crystal displays, depo...
Electromagnetic metasurfaces are broadly defined as optically thin layersthat are structured on the ...
Optical transmission through concentric circular nanoslits is studied in experiments and numerical s...
Chiral properties of plasmonic metasurfaces, especially related to different absorption of left and ...
Plasmonic nanocavities confine light in deep subwavelength volumes and in recent years have enabled ...