Plasmonic nanoantennas are pushing the limits of optical imaging resolution capabilities in near-field scanning optical microscopy (NSOM). Accordingly, these techniques are driving the basic understanding of photonic and optoelectronic nanoscale devices with applications in sensing, energy conversion, solid-state lighting, and information technology. Imaging the localized surface plasmon resonance (LSPR) at the nanoscale is a key to understanding the optical responses of a given tip geometry in order to engineer better plasmonic nanoantennas for near-field experiments. In recent years the advancement of focused ion beam technology provides the ability to directly modify plasmonic structures with nanometer resolution. Also, scanning transmis...
Near-field manipulation in plasmonic nanocavities can provide various applications in nanoscale scie...
ABSTRACT: Imaging localized plasmon modes in noble-metal nanoparticles is of fundamental importance ...
We report the spatial mapping of surface plasmons on conical gold nanotips by electron energy loss s...
Plasmonic nanoantennas are pushing the limits of optical imaging resolution capabilities in near-fie...
Plasmonic nanoantennas are pushing the limits of optical imaging resolution capabilities in near-fie...
The optical response from metal nanoparticles and nanostructures is dominated by surface plasmon gen...
Plasmonic nanostructures and -devices are rapidly transforming light manipulation technology by allo...
Thesis (Ph.D.)--University of Washington, 2014The vast array of potential applications for plasmons ...
Plasmonic devices designed in three dimensions enable careful tuning of optical responses for contro...
Photonic nanomaterials, and in particular plasmonic nanoantennas, enable the manipulation of light-m...
Plasmonic gap modes provide the ultimate confinement of optical fields. Demanding high spatial resol...
Plasmonic devices designed in three dimensions enable careful tuning of optical responses for contro...
Photoemission electron microscopy (PEEM) is an imaging method which uses electrons excited through t...
The excitation of surface plasmon from individual silver nanowires and gold nanorods is investigated...
Recent experiments have evidenced sub-nanometer resolution in plasmonic-enhanced probe spectroscopy....
Near-field manipulation in plasmonic nanocavities can provide various applications in nanoscale scie...
ABSTRACT: Imaging localized plasmon modes in noble-metal nanoparticles is of fundamental importance ...
We report the spatial mapping of surface plasmons on conical gold nanotips by electron energy loss s...
Plasmonic nanoantennas are pushing the limits of optical imaging resolution capabilities in near-fie...
Plasmonic nanoantennas are pushing the limits of optical imaging resolution capabilities in near-fie...
The optical response from metal nanoparticles and nanostructures is dominated by surface plasmon gen...
Plasmonic nanostructures and -devices are rapidly transforming light manipulation technology by allo...
Thesis (Ph.D.)--University of Washington, 2014The vast array of potential applications for plasmons ...
Plasmonic devices designed in three dimensions enable careful tuning of optical responses for contro...
Photonic nanomaterials, and in particular plasmonic nanoantennas, enable the manipulation of light-m...
Plasmonic gap modes provide the ultimate confinement of optical fields. Demanding high spatial resol...
Plasmonic devices designed in three dimensions enable careful tuning of optical responses for contro...
Photoemission electron microscopy (PEEM) is an imaging method which uses electrons excited through t...
The excitation of surface plasmon from individual silver nanowires and gold nanorods is investigated...
Recent experiments have evidenced sub-nanometer resolution in plasmonic-enhanced probe spectroscopy....
Near-field manipulation in plasmonic nanocavities can provide various applications in nanoscale scie...
ABSTRACT: Imaging localized plasmon modes in noble-metal nanoparticles is of fundamental importance ...
We report the spatial mapping of surface plasmons on conical gold nanotips by electron energy loss s...