Nano-rocket-tip arrays were fabricated in silicon by using focused ion-beam (FIB) milling and then double-replica molded to obtain transparent polymeric tips that finally were coated with a metallic layer. The milling process was investigated under different beam conditions, which determine an aspect ratio and the radius of the tips. Simulations show that metallic coated nano-rocket tips are able to focus surface plasmons to produce important light intensity enhancement factors that can be exploited for high sensitivity molecular detection useful in biosensor, cell analysis, DNA hybridization studies, etc
Gold nanojets with various morphologies, from nanopillar to nanotip with up to 800 nm height, and fi...
Nanotips have many applications such as scanning probe mi-croscopy (SPM) and vacuum microelectronic ...
The resonant excitation of free electrons in metallic nanostructures enables extreme near field inte...
Nano-rocket-tip arrays were fabricated in silicon by using focused ion-beam (FIB) milling and then d...
Plasmonic nanoscale devices/structures have gained more attention from researchers due to their prom...
Recent progresses in nanotechnology fabrication gives the opportunity to build highly functional nan...
We demonstrate the design, fabrication and characterization of a near-field plasmonic nanofocusing p...
Tapered metallic nanostructures that harbor surface plasmons are highly interesting for nanophotonic...
Plasmonics and nanoscale antennas have been intensively investigated for sensors, metasurfaces and o...
The capability to focus electromagnetic energy at the nanoscale plays an important role in nanoscine...
The shape and dimensions of an atomic force microscope tip are crucial factors to obtain high resolu...
Focused ion beam (FIB) milling is a versatile maskless and resistless patterning technique and has b...
Laser beam, electron beam & focused ion beam are attracting much research interests in functiona...
The fabrication of novel atomic force microscopy (AFM) probes for nanoindentation and nanoimprint li...
We demonstrate the on-chip nanoscale focusing of surface plasmons in metallic nanotip coupled to the...
Gold nanojets with various morphologies, from nanopillar to nanotip with up to 800 nm height, and fi...
Nanotips have many applications such as scanning probe mi-croscopy (SPM) and vacuum microelectronic ...
The resonant excitation of free electrons in metallic nanostructures enables extreme near field inte...
Nano-rocket-tip arrays were fabricated in silicon by using focused ion-beam (FIB) milling and then d...
Plasmonic nanoscale devices/structures have gained more attention from researchers due to their prom...
Recent progresses in nanotechnology fabrication gives the opportunity to build highly functional nan...
We demonstrate the design, fabrication and characterization of a near-field plasmonic nanofocusing p...
Tapered metallic nanostructures that harbor surface plasmons are highly interesting for nanophotonic...
Plasmonics and nanoscale antennas have been intensively investigated for sensors, metasurfaces and o...
The capability to focus electromagnetic energy at the nanoscale plays an important role in nanoscine...
The shape and dimensions of an atomic force microscope tip are crucial factors to obtain high resolu...
Focused ion beam (FIB) milling is a versatile maskless and resistless patterning technique and has b...
Laser beam, electron beam & focused ion beam are attracting much research interests in functiona...
The fabrication of novel atomic force microscopy (AFM) probes for nanoindentation and nanoimprint li...
We demonstrate the on-chip nanoscale focusing of surface plasmons in metallic nanotip coupled to the...
Gold nanojets with various morphologies, from nanopillar to nanotip with up to 800 nm height, and fi...
Nanotips have many applications such as scanning probe mi-croscopy (SPM) and vacuum microelectronic ...
The resonant excitation of free electrons in metallic nanostructures enables extreme near field inte...