State-of-the-art nanophotonic devices based on semiconductor technology use total internal reflection or the photonic bandgap effect to reduce the waveguide core dimensions down to hundreds of nanometers, ensuring strong optical confinement within the scale of the wavelength. Within the framework of this thesis, we investigate the light propagation in such devices by direct experimental reconstruction of their dispersion relation ω (k), where ω is the optical frequency and k the wave vector of the supported modes. Knowledge of the dispersion relation provides us with comprehensive information about the guided field, including the number of supported modes, their phase and group velocity as well as the higher order dispersion. As a principal...
Over the last decade, the ultrafast laser has emerged as a powerful tool to shape three-dimensional ...
We investigate the localized coupled-cavity modes in two-dimensional dielectric photonic crystals. T...
As the search for fabrication techniques towards the production of large area defect free three-dime...
We present a far-field optical technique allowing measurements of the dispersion relation of electrom...
Silicon has numerous benefits as a photonic integrated circuit platform, including optical transpare...
In this dissertation experimental results are presented on controlling light with nanophotonic media...
We investigate the photonic properties of one dimensional photonic crystals realized on Silicon On I...
The ability of using integrated photonics to scale multiple optical components on a single monolithi...
In this dissertation, I explore new plasmonic structures and devices for manipulating light at the n...
All-optical signal processing implemented in silicon photonics is considered as a promising route to...
Integrated photonics is the field of shrinking and simplifying the fabrication of devices that guide...
Semiconductor nanowires have been used in a variety of passive and active optoelectronic devices inc...
This thesis reports experimental and theoretical studies on photonic crystal waveguides in the silic...
abstract: This thesis summarizes modeling and simulation of plasmonic waveguides and nanolasers. The...
The demand for high data rate communications and renewable energy sources has led to new materials a...
Over the last decade, the ultrafast laser has emerged as a powerful tool to shape three-dimensional ...
We investigate the localized coupled-cavity modes in two-dimensional dielectric photonic crystals. T...
As the search for fabrication techniques towards the production of large area defect free three-dime...
We present a far-field optical technique allowing measurements of the dispersion relation of electrom...
Silicon has numerous benefits as a photonic integrated circuit platform, including optical transpare...
In this dissertation experimental results are presented on controlling light with nanophotonic media...
We investigate the photonic properties of one dimensional photonic crystals realized on Silicon On I...
The ability of using integrated photonics to scale multiple optical components on a single monolithi...
In this dissertation, I explore new plasmonic structures and devices for manipulating light at the n...
All-optical signal processing implemented in silicon photonics is considered as a promising route to...
Integrated photonics is the field of shrinking and simplifying the fabrication of devices that guide...
Semiconductor nanowires have been used in a variety of passive and active optoelectronic devices inc...
This thesis reports experimental and theoretical studies on photonic crystal waveguides in the silic...
abstract: This thesis summarizes modeling and simulation of plasmonic waveguides and nanolasers. The...
The demand for high data rate communications and renewable energy sources has led to new materials a...
Over the last decade, the ultrafast laser has emerged as a powerful tool to shape three-dimensional ...
We investigate the localized coupled-cavity modes in two-dimensional dielectric photonic crystals. T...
As the search for fabrication techniques towards the production of large area defect free three-dime...