The engineering of self-organized plasmonic metasurfaces is demonstrated using a maskless technique with defocused ion-beam sputtering and kinetically controlled deposition. The proposed reliable, cost-effective, and controllable approach enables large-area (order of square centimeter) sub-wavelength periodic patterning with close-packed gold nanostrips. A multi-level variant of the method leads to high-resolution manufacturing of vertically stacked nanostrip dimer arrays, without resorting to lithographic approaches. The design of these self-organized metasurfaces is optimized by employing plasmon hybridization methods. In particular, preliminary results on the so-called gap-plasmon configuration of the nanostrip dimers, implementing magne...
Polydimethylsiloxane (PDMS) templates are nanopatterned over large areas to form uniaxial wrinkles b...
We present ensembles of surface-ordered nanoparticle arrangements, which are formed by template-assi...
A metallic nanocross geometry sustaining broad dipole and sharp higher order localized surface plasm...
The engineering of self-organized plasmonic metasurfaces is demonstrated using a maskless technique ...
Plasmonic metasurfaces based on quasi-one-dimensional (1D) nanostripe arrays are homogeneously prepa...
Plasmonic metasurfaces based on quasi-one-dimensional (1D) nanostripe arrays are homogeneously prepa...
Strong electromagnetic field confinement and enhancement can be readily achieved in plasmonic nanoan...
Metasurfaces are ultrathin, quasi-two-dimensional materials that are engineered to control and manip...
Plasmonic molecules are building blocks of metallic nanostructures that give rise to intriguing opti...
The nanofabrication of large-area metasurfaces with tunable optoelectronic response is crucial in ma...
Bidirectional nanoantennas are of key relevance for advanced functionalities to be implemented at th...
This work involves the design, fabrication and characterization of metamaterials based on meta-atoms...
Efficient substrates for surface-enhanced Raman spectroscopy (SERS) are under constant development, ...
Plasmonic nanometasurfaces/nanostructures possess strong electromagnetic field enhancement caused by...
Polydimethylsiloxane (PDMS) templates are nanopatterned over large areas to form uniaxial wrinkles b...
We present ensembles of surface-ordered nanoparticle arrangements, which are formed by template-assi...
A metallic nanocross geometry sustaining broad dipole and sharp higher order localized surface plasm...
The engineering of self-organized plasmonic metasurfaces is demonstrated using a maskless technique ...
Plasmonic metasurfaces based on quasi-one-dimensional (1D) nanostripe arrays are homogeneously prepa...
Plasmonic metasurfaces based on quasi-one-dimensional (1D) nanostripe arrays are homogeneously prepa...
Strong electromagnetic field confinement and enhancement can be readily achieved in plasmonic nanoan...
Metasurfaces are ultrathin, quasi-two-dimensional materials that are engineered to control and manip...
Plasmonic molecules are building blocks of metallic nanostructures that give rise to intriguing opti...
The nanofabrication of large-area metasurfaces with tunable optoelectronic response is crucial in ma...
Bidirectional nanoantennas are of key relevance for advanced functionalities to be implemented at th...
This work involves the design, fabrication and characterization of metamaterials based on meta-atoms...
Efficient substrates for surface-enhanced Raman spectroscopy (SERS) are under constant development, ...
Plasmonic nanometasurfaces/nanostructures possess strong electromagnetic field enhancement caused by...
Polydimethylsiloxane (PDMS) templates are nanopatterned over large areas to form uniaxial wrinkles b...
We present ensembles of surface-ordered nanoparticle arrangements, which are formed by template-assi...
A metallic nanocross geometry sustaining broad dipole and sharp higher order localized surface plasm...