Surface Plasmon Polaritons (SPPs) are considered to be attractive components for plasmonics and nanophotonic devices due to their sensitivity to interface changes, and their ability to guide and confine light beyond the diffraction limit. They have been utilized in SPP resonance sensors and near field imaging techniques and, more recently, SPP experiments to monitor and control ultrafast charge carrier and energy relaxation dynamics in thin films. In this thesis, we discuss excitation and propagation properties of ultrafast SPPs on thin extended metal films and SPP waveguide structures. In addition, localized and propagating surface plasmon interactions in functional plasmonic nanostructures will also be addressed. For the excitation studie...
The dispersive properties of short-range surface plasmon polaritons are investigated at the buried i...
The dissertation focuses on a new ultrafast circuit system based on plasmonic nanoarchitectures. To ...
The dissertation focuses on a new ultrafast circuit system based on plasmonic nanoarchitectures. To ...
Surface Plasmon Polaritons (SPPs) are considered to be attractive components for plasmonics and nano...
Using near-field scanning optical microscopy and ultrafast laser spectroscopy, we study the linear o...
Using near-field scanning optical microscopy and ultrafast laser spectroscopy, we study the linear o...
Using near-field scanning optical microscopy and ultrafast laser spectroscopy, we study the linear o...
We study theoretically ultrafast light propagation through a periodic array of holes in a silver fil...
Both photons and electrons may be used to excite surface plasmon polaritons, the collective charge d...
Surface plasmon (SP) excitations strongly influence the optical properties of metal nanostructures a...
Surface plasmon polaritons, propagating bound oscillations of electrons and light at a metal surface...
The field of nanophotonics is finding myriad applications in telecommunications and information tech...
Thesis advisor: Michael J. NaughtonSurface plasmon polaritons (SPPs) are hybridized quasiparticles o...
Various properties of Surface Plasmon Polaritons (SPPs) at the interface between a layer of PMMA (po...
Capturing and controlling plasmons at buried interfaces with nanometre and femtosecond resolution ha...
The dispersive properties of short-range surface plasmon polaritons are investigated at the buried i...
The dissertation focuses on a new ultrafast circuit system based on plasmonic nanoarchitectures. To ...
The dissertation focuses on a new ultrafast circuit system based on plasmonic nanoarchitectures. To ...
Surface Plasmon Polaritons (SPPs) are considered to be attractive components for plasmonics and nano...
Using near-field scanning optical microscopy and ultrafast laser spectroscopy, we study the linear o...
Using near-field scanning optical microscopy and ultrafast laser spectroscopy, we study the linear o...
Using near-field scanning optical microscopy and ultrafast laser spectroscopy, we study the linear o...
We study theoretically ultrafast light propagation through a periodic array of holes in a silver fil...
Both photons and electrons may be used to excite surface plasmon polaritons, the collective charge d...
Surface plasmon (SP) excitations strongly influence the optical properties of metal nanostructures a...
Surface plasmon polaritons, propagating bound oscillations of electrons and light at a metal surface...
The field of nanophotonics is finding myriad applications in telecommunications and information tech...
Thesis advisor: Michael J. NaughtonSurface plasmon polaritons (SPPs) are hybridized quasiparticles o...
Various properties of Surface Plasmon Polaritons (SPPs) at the interface between a layer of PMMA (po...
Capturing and controlling plasmons at buried interfaces with nanometre and femtosecond resolution ha...
The dispersive properties of short-range surface plasmon polaritons are investigated at the buried i...
The dissertation focuses on a new ultrafast circuit system based on plasmonic nanoarchitectures. To ...
The dissertation focuses on a new ultrafast circuit system based on plasmonic nanoarchitectures. To ...