AbstractWe present a process to fabricate fully polymer based integrated optical devices which is based on maskless lithography and hot embossing. Using the maskless lithographic setup, we are able to create a hot embossing stamp in a flexible and fast manner. We demonstrate that our process is capable of creating linear optical waveguides, Y-splitters and Mach-Zehnder interferometers designed by preliminary optical simulations. The fabricated structures are analyzed with respect to optical smoothness and line edge roughness. In the future, our process will greatly enhance a fast design and fabrication of complex optical sensor structures
The fabrication of polymer based waveguide devices by different methods is investigated in this work...
Optical waveguides are structures that confine and direct optical signals in a region of higher effe...
We demonstrate the manufacturing of embedded multimode optical waveguides through linking of polymet...
AbstractWe present a process to fabricate fully polymer based integrated optical devices which is ba...
We present a process to fabricate fully polymer based integrated optical devices which is based on m...
We present our recent results on the fabrication of photonic devices such as single-mode and few-mod...
Micro-optical sensors based on optical waveguides are widely used to measure temperature, force and ...
Photonic integrated circuits represent a topic of increasing interest in the research community. It...
For applications in optical communication, sensing or information projection in automotive lighting,...
A novel method for fabricating multimode PDMS waveguides is presented. This process is based on a ho...
For sensing applications in structural health monitoring, process technology or life sciences polyme...
Highly-functional photonic sensor networks integrated in thin polymer foils offer great potential fo...
Polymer based diffractive optical elements have gained increasing interest due to their potential to...
The aim of the present work was to design and fabricate all purpose, positioning-tolerant and effici...
Polymer-based holographic and diffractive optical elements have gained increasing interest due to th...
The fabrication of polymer based waveguide devices by different methods is investigated in this work...
Optical waveguides are structures that confine and direct optical signals in a region of higher effe...
We demonstrate the manufacturing of embedded multimode optical waveguides through linking of polymet...
AbstractWe present a process to fabricate fully polymer based integrated optical devices which is ba...
We present a process to fabricate fully polymer based integrated optical devices which is based on m...
We present our recent results on the fabrication of photonic devices such as single-mode and few-mod...
Micro-optical sensors based on optical waveguides are widely used to measure temperature, force and ...
Photonic integrated circuits represent a topic of increasing interest in the research community. It...
For applications in optical communication, sensing or information projection in automotive lighting,...
A novel method for fabricating multimode PDMS waveguides is presented. This process is based on a ho...
For sensing applications in structural health monitoring, process technology or life sciences polyme...
Highly-functional photonic sensor networks integrated in thin polymer foils offer great potential fo...
Polymer based diffractive optical elements have gained increasing interest due to their potential to...
The aim of the present work was to design and fabricate all purpose, positioning-tolerant and effici...
Polymer-based holographic and diffractive optical elements have gained increasing interest due to th...
The fabrication of polymer based waveguide devices by different methods is investigated in this work...
Optical waveguides are structures that confine and direct optical signals in a region of higher effe...
We demonstrate the manufacturing of embedded multimode optical waveguides through linking of polymet...