Polymers are applicable materials for photonic device fabrication due to their good optical properties and versatile processability at low temperatures, and therefore, provide possibility for low-cost fabrication. For waveguide device fabrication, the most critical requirement is the selection of the patterning method for the ridge that is bounding the optical mode in the waveguide. In this paper, we review our UV-imprinting achievements for fabricating polymer-based single-mode waveguides: ridge, inverted ridge and layered composite waveguides. In addition, we show simulation results for polymer-based slot waveguides. The ridge waveguide consists of a strip waveguide core superimposed onto a slab waveguide made of the core material. When p...
Low-loss single-mode waveguides are fabricated for optical interconnection applications. Such wavegu...
Low-loss single-mode waveguides are fabricated for optical interconnection applications. Such wavegu...
A nano-imprinting technique for fabricating polymer planar waveguide Bragg gratings is presented. Th...
Polymers are important materials in fabrication of photonics devices due to their good optical prope...
Polymers are important materials in fabrication of photonics devices due to their good optical prope...
Optical ridge type waveguides based on UV-curable polymer were fabricated by imprinting method. Posi...
Optical ridge type waveguides based on UV-curable polymer were fabricated by imprinting method. Posi...
Low-loss polymeric optical waveguides were fabricated by UV-nanoimprinting. With this technique the ...
Low-loss polymeric optical waveguides were fabricated by UV-nanoimprinting. With this technique the ...
In this paper we introduce a fabrication process for polymer rib waveguides that uses UV-imprint lit...
In this paper we introduce a fabrication process for polymer rib waveguides that uses UV-imprint lit...
We demonstrate polymeric single-mode waveguides with low loss at visible wavelength. Inverted ridge ...
We demonstrate polymeric single-mode waveguides with low loss at visible wavelength. Inverted ridge ...
Polymers are promising materials for fabricating photonic integrated waveguide devices. Versatile fu...
Polymers are promising materials for fabricating photonic integrated waveguide devices. Versatile fu...
Low-loss single-mode waveguides are fabricated for optical interconnection applications. Such wavegu...
Low-loss single-mode waveguides are fabricated for optical interconnection applications. Such wavegu...
A nano-imprinting technique for fabricating polymer planar waveguide Bragg gratings is presented. Th...
Polymers are important materials in fabrication of photonics devices due to their good optical prope...
Polymers are important materials in fabrication of photonics devices due to their good optical prope...
Optical ridge type waveguides based on UV-curable polymer were fabricated by imprinting method. Posi...
Optical ridge type waveguides based on UV-curable polymer were fabricated by imprinting method. Posi...
Low-loss polymeric optical waveguides were fabricated by UV-nanoimprinting. With this technique the ...
Low-loss polymeric optical waveguides were fabricated by UV-nanoimprinting. With this technique the ...
In this paper we introduce a fabrication process for polymer rib waveguides that uses UV-imprint lit...
In this paper we introduce a fabrication process for polymer rib waveguides that uses UV-imprint lit...
We demonstrate polymeric single-mode waveguides with low loss at visible wavelength. Inverted ridge ...
We demonstrate polymeric single-mode waveguides with low loss at visible wavelength. Inverted ridge ...
Polymers are promising materials for fabricating photonic integrated waveguide devices. Versatile fu...
Polymers are promising materials for fabricating photonic integrated waveguide devices. Versatile fu...
Low-loss single-mode waveguides are fabricated for optical interconnection applications. Such wavegu...
Low-loss single-mode waveguides are fabricated for optical interconnection applications. Such wavegu...
A nano-imprinting technique for fabricating polymer planar waveguide Bragg gratings is presented. Th...