We present an experimental study of the influence of a cladding on the losses in a Si3N4 on SiO2 cylindrical microresonator (MR). The experimental results are corroborated with detailed numerical simulations and examples of devices which exploit the presence of a cladding are give
This dissertation reports very novel solutions for the trimming and compensation of various paramete...
Advances in mobile technology, due to the rapid growth of mobile wireless systems, coupled with stri...
This dissertation investigates dissipation in microelectromechanical (MEMS) resonators via detailed ...
A systematic experimental and numerical study of the device performance of waveguide-coupled SiON mi...
Cylindrical micro-resonators have been proposed as all-optical switch, micro-laser, add-drop filters...
Dependence of key parameters of low-contrast ring miroresonators on cross-section dimensions is stud...
A normalized design approach has been developed that allows rapid estimates of parameters like the b...
We developed a novel fabrication process for the stacked dense integration of a microring resonator ...
In the new field of Cavity Optomechanics the modes of a mechanical oscillator are strongly coupled t...
Optical frequency combs have numerous applications in spectroscopy, metrology, and communications. S...
Microresonators are crucial components of microelectromechanical systems (MEMS) used for communicati...
We experimentally and numerically study silicon nitride-based laterally waveguide-coupled microreson...
Microring resonators show the possibility for designing Very Large Scale Integrated (VLSI) photonic ...
In this work, we propose a novel way to flexibly engineer the waveguide dispersion by patterning the...
The feasibility of cylindrical microresonators for all-optical switching applications is discussed b...
This dissertation reports very novel solutions for the trimming and compensation of various paramete...
Advances in mobile technology, due to the rapid growth of mobile wireless systems, coupled with stri...
This dissertation investigates dissipation in microelectromechanical (MEMS) resonators via detailed ...
A systematic experimental and numerical study of the device performance of waveguide-coupled SiON mi...
Cylindrical micro-resonators have been proposed as all-optical switch, micro-laser, add-drop filters...
Dependence of key parameters of low-contrast ring miroresonators on cross-section dimensions is stud...
A normalized design approach has been developed that allows rapid estimates of parameters like the b...
We developed a novel fabrication process for the stacked dense integration of a microring resonator ...
In the new field of Cavity Optomechanics the modes of a mechanical oscillator are strongly coupled t...
Optical frequency combs have numerous applications in spectroscopy, metrology, and communications. S...
Microresonators are crucial components of microelectromechanical systems (MEMS) used for communicati...
We experimentally and numerically study silicon nitride-based laterally waveguide-coupled microreson...
Microring resonators show the possibility for designing Very Large Scale Integrated (VLSI) photonic ...
In this work, we propose a novel way to flexibly engineer the waveguide dispersion by patterning the...
The feasibility of cylindrical microresonators for all-optical switching applications is discussed b...
This dissertation reports very novel solutions for the trimming and compensation of various paramete...
Advances in mobile technology, due to the rapid growth of mobile wireless systems, coupled with stri...
This dissertation investigates dissipation in microelectromechanical (MEMS) resonators via detailed ...