Nanoantennas are metal structures that provide strong optical coupling between a nanoscale volume and the far field. This coupling is mediated by surface plasmons, oscillations of the free electrons in the metal. Increasing the control over the resonant plasmonic field distribution opens up a wide range of applications of nanoantennas operating both in receiving and transmitting mode. This thesis presents how the dispersion and confinement of surface plasmons in nanoantennas are resolved and further engineered. Fabrication of nanostructures is done using focused ion beam milling (FIB) in metallic surfaces. We demonstrate that patterning in single-crystal substrates allows us to precisely control the geometry in which plasmons are confined. ...
As optical counterpart of microwave antennas, optical nano-antennas are important devices for conver...
We resolve the resonant whispering gallery modes of plasmonic subwavelength ring cavities defined by...
In free space, the diffraction limit sets a lower bound to the size to which light can be confined. ...
Surface plasmon polaritons (SPPs) provide a route towards miniaturization of optical compo-nents, wh...
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
Surface plasmon polaritons (SPPs) are electromagnetic waves that are strongly coupled to the collect...
Surface plasmon polaritons (SPPs) are electromagnetic waves that are strongly coupled to the collect...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
As optical counterpart of microwave antennas, optical nano-antennas are important devices for conver...
We use focused-ion-beam milling of a single-crystal Au surface to fabricate a 590-nm-long linear rid...
We report the observation of plasmonic modes of annular resonators in nanofabricated Ag and Au surfa...
We report the observation of plasmonic modes of annular resonators in nanofabricated Ag and Au surfa...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
As optical counterpart of microwave antennas, optical nano-antennas are important devices for conver...
We resolve the resonant whispering gallery modes of plasmonic subwavelength ring cavities defined by...
In free space, the diffraction limit sets a lower bound to the size to which light can be confined. ...
Surface plasmon polaritons (SPPs) provide a route towards miniaturization of optical compo-nents, wh...
Surface plasmons are elementary excitations of the collective and coherent oscillations of conductiv...
Surface plasmon polaritons (SPPs) are electromagnetic waves that are strongly coupled to the collect...
Surface plasmon polaritons (SPPs) are electromagnetic waves that are strongly coupled to the collect...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
As optical counterpart of microwave antennas, optical nano-antennas are important devices for conver...
We use focused-ion-beam milling of a single-crystal Au surface to fabricate a 590-nm-long linear rid...
We report the observation of plasmonic modes of annular resonators in nanofabricated Ag and Au surfa...
We report the observation of plasmonic modes of annular resonators in nanofabricated Ag and Au surfa...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
Controllable manipulation of light propagation on nanostructured plasmonic materials paves the way t...
As optical counterpart of microwave antennas, optical nano-antennas are important devices for conver...
We resolve the resonant whispering gallery modes of plasmonic subwavelength ring cavities defined by...
In free space, the diffraction limit sets a lower bound to the size to which light can be confined. ...