We present our recent results on the fabrication of photonic devices such as single-mode and few-mode waveguides, Ycouplers as well as integrated interferometric sensor devices. The devices were created by means of a fabrication method based on maskless lithography, which allows for fabricating embedded integrated polymer elements on a scale of several square centimeters with a resolution down to one micron. We demonstrate the versatility of our approach by presenting first results on photonic structures created by maskless lithography. © 2016 SPIE.DFG/SFB/TRR 12
Optical detection is one of the most common methods of detection in microfluidic systems[1]. An opti...
This chapter introduces the background for the development of highly functional photonic devices as ...
In the last years polymer photonics experienced a tremendous boost in research efforts, targeting fo...
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...
For applications in optical communication, sensing or information projection in automotive lighting,...
Highly-functional photonic sensor networks integrated in thin polymer foils offer great potential fo...
The aim of the present work was to design and fabricate all purpose, positioning-tolerant and effici...
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...
Traditional optical fibers have been developed to achieve novel characteristics for both macro- and ...
The fabrication of polymer based waveguide devices by different methods is investigated in this work...
Polymers are promising materials for fabricating photonic integrated waveguide devices. Versatile fu...
Optical waveguides are structures that confine and direct optical signals in a region of higher effe...
Optical waveguides are one of the most important photonic components. They are indispensable tools i...
Optical detection is one of the most common methods of detection in microfluidic systems[1]. An opti...
This chapter introduces the background for the development of highly functional photonic devices as ...
In the last years polymer photonics experienced a tremendous boost in research efforts, targeting fo...
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...
For applications in optical communication, sensing or information projection in automotive lighting,...
Highly-functional photonic sensor networks integrated in thin polymer foils offer great potential fo...
The aim of the present work was to design and fabricate all purpose, positioning-tolerant and effici...
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...
Traditional optical fibers have been developed to achieve novel characteristics for both macro- and ...
The fabrication of polymer based waveguide devices by different methods is investigated in this work...
Polymers are promising materials for fabricating photonic integrated waveguide devices. Versatile fu...
Optical waveguides are structures that confine and direct optical signals in a region of higher effe...
Optical waveguides are one of the most important photonic components. They are indispensable tools i...
Optical detection is one of the most common methods of detection in microfluidic systems[1]. An opti...
This chapter introduces the background for the development of highly functional photonic devices as ...
In the last years polymer photonics experienced a tremendous boost in research efforts, targeting fo...