We are developing a MEMS-based device that can produce continuously tunable delays of optical signals. The design is based on coupled dual suspended waveguides fabricated in Indium Phosphide. We report on simulation-based optimisation of optical and mechanical properties of the structure and on current progress in fabrication
Creation of miniature optical delay lines and buffers is one of the greatest challenges of the moder...
This thesis presents the development of a Micro-Electro-Mechanical System (MEMS) monolithic in-plane...
The use of opto-electronic devices for ultrafast switching applications is a practical alternative t...
We present the design and fabrication of a tunable optical buffer device based on III-V semiconducto...
We present design and fabrication of free-standing InP optical waveguides for MEMS-actuated optical ...
We present the design and fabrication of a dual air-bridge waveguide structure integrated with MEMS ...
We present the design and fabrication of suspended optical waveguides on indium phosphide (InP) plat...
We propose a chip-based optical buffer that is continuously tunable by microelectromechanical actuat...
We present our work towards development of an optical buffer based on the InP platform that consists...
Data used in publication: N. Podoliak, W. H. Ng, W. Stewart, H. Liu, A. J. Kenyon, P. Horak, Deve...
This dissertation presents the design, fabrication, and evaluation of the first monolithically integ...
Indium phosphide (InP) is extensively used for integrated waveguide and photonic devices due to its ...
A key platform technology for InP optical waveguide MEMS is developed. The novel waveguide design is...
Abstract—We present a novel waveguide design for InP microelecromechanical systems. The substrate is...
This dissertation presents the design, fabrication, and evaluation of the first monolithically integ...
Creation of miniature optical delay lines and buffers is one of the greatest challenges of the moder...
This thesis presents the development of a Micro-Electro-Mechanical System (MEMS) monolithic in-plane...
The use of opto-electronic devices for ultrafast switching applications is a practical alternative t...
We present the design and fabrication of a tunable optical buffer device based on III-V semiconducto...
We present design and fabrication of free-standing InP optical waveguides for MEMS-actuated optical ...
We present the design and fabrication of a dual air-bridge waveguide structure integrated with MEMS ...
We present the design and fabrication of suspended optical waveguides on indium phosphide (InP) plat...
We propose a chip-based optical buffer that is continuously tunable by microelectromechanical actuat...
We present our work towards development of an optical buffer based on the InP platform that consists...
Data used in publication: N. Podoliak, W. H. Ng, W. Stewart, H. Liu, A. J. Kenyon, P. Horak, Deve...
This dissertation presents the design, fabrication, and evaluation of the first monolithically integ...
Indium phosphide (InP) is extensively used for integrated waveguide and photonic devices due to its ...
A key platform technology for InP optical waveguide MEMS is developed. The novel waveguide design is...
Abstract—We present a novel waveguide design for InP microelecromechanical systems. The substrate is...
This dissertation presents the design, fabrication, and evaluation of the first monolithically integ...
Creation of miniature optical delay lines and buffers is one of the greatest challenges of the moder...
This thesis presents the development of a Micro-Electro-Mechanical System (MEMS) monolithic in-plane...
The use of opto-electronic devices for ultrafast switching applications is a practical alternative t...