With the rapid development of nanoscience and nanotechnology, surface plasmonics based on metal nanoparticles and nanostructures gain increasing interest, not only for fundamental scientific studies, but also for optical and sensor applications. At the nanoscale, the physical and chemical properties of metal particles, especially their optical properties, strongly depend on size and shape, as well as on the surrounding media and structures. By modifying those features, one may design novel functional materials and devices. This thesis deals with investigations of light-induced effects at the nanoscale, focusing on optically induced forces on plasmonic nanostructures and angular distribution of light due to the particle-substrate interactio...
Plasmonic nanoparticles support surface plasmon resonances that are sensitive to the environment. Fa...
Strong electromagnetic enhancements can be provided by noble metal nanostructures via the excitation...
The complementary optical properties of metal and semiconductor materials make them attractive for m...
With the rapid development of nanoscience and nanotechnology, surface plasmonics based on metal nan...
Plasmonic nanoparticles, typically gold and silver colloids, can be trapped by a highly focused Gaus...
This book introduces the fascinating world of plasmonics and physics at the nanoscale, with a focus ...
Optical trapping of metal nanoparticles investigates phenomena at the interface of plasmonics and op...
Plasmonics is the branch of photonics that is concerned with the interactions which take place betwe...
This thesis focuses on the exploration of interactions between circularly polarized light and plasmo...
The strong electromagnetic field that is induced at the surface of a plasmonic nanoparticle can be u...
The strong electromagnetic field that is induced at the surface of a plasmonic nanoparticle can be u...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
We theoretically analyze optical forces on aggregates of metal nanoparticles in a focused Gaussian b...
We theoretically analyze optical forces on aggregates of metal nanoparticles in a focused Gaussian b...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
Plasmonic nanoparticles support surface plasmon resonances that are sensitive to the environment. Fa...
Strong electromagnetic enhancements can be provided by noble metal nanostructures via the excitation...
The complementary optical properties of metal and semiconductor materials make them attractive for m...
With the rapid development of nanoscience and nanotechnology, surface plasmonics based on metal nan...
Plasmonic nanoparticles, typically gold and silver colloids, can be trapped by a highly focused Gaus...
This book introduces the fascinating world of plasmonics and physics at the nanoscale, with a focus ...
Optical trapping of metal nanoparticles investigates phenomena at the interface of plasmonics and op...
Plasmonics is the branch of photonics that is concerned with the interactions which take place betwe...
This thesis focuses on the exploration of interactions between circularly polarized light and plasmo...
The strong electromagnetic field that is induced at the surface of a plasmonic nanoparticle can be u...
The strong electromagnetic field that is induced at the surface of a plasmonic nanoparticle can be u...
Plasmons are collective oscillations of free electrons in a metal. At optical frequencies plasmons e...
We theoretically analyze optical forces on aggregates of metal nanoparticles in a focused Gaussian b...
We theoretically analyze optical forces on aggregates of metal nanoparticles in a focused Gaussian b...
Metal nanostructures have received considerable attention for their ability to guide and manipulate ...
Plasmonic nanoparticles support surface plasmon resonances that are sensitive to the environment. Fa...
Strong electromagnetic enhancements can be provided by noble metal nanostructures via the excitation...
The complementary optical properties of metal and semiconductor materials make them attractive for m...