In this paper we introduce a fabrication process for polymer rib waveguides that uses UV-imprint lithography. In the structure of an inverted-rib waveguide, the lower cladding of the waveguide is patterned by UV-imprinting and the waveguiding layer is subsequently spin-coated. That makes the thickness of the formed slab layer on the rib waveguide controllable by tuning the spin-coating parameters. The fabrication process utilizes two steps of UV-imprinting. The first one is to form a rigid polymer mold from positive tone photoresist. The second one is to pattern the waveguide lower cladding with the formed polymer mold. Through the two steps of UV-imprinting, rib waveguides can be fabricated without an etching procedure. We demonstrated the...
A nano-imprinting technique for fabricating polymer planar waveguide Bragg gratings is presented. Th...
Polymers are promising materials for fabricating photonic integrated waveguide devices. Versatile fu...
In order to achieve a high refractive index contrast for air-suspended photonic devices, we present ...
In this paper we introduce a fabrication process for polymer rib waveguides that uses UV-imprint lit...
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 ...
Polymers are applicable materials for photonic device fabrication due to their good optical properti...
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 ...
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 promising materials for fabricating photonic integrated waveguide devices. Versatile fu...
In order to achieve a high refractive index contrast for air-suspended photonic devices, we present ...
In this paper we introduce a fabrication process for polymer rib waveguides that uses UV-imprint lit...
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 ...
Polymers are applicable materials for photonic device fabrication due to their good optical properti...
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 ...
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 promising materials for fabricating photonic integrated waveguide devices. Versatile fu...
In order to achieve a high refractive index contrast for air-suspended photonic devices, we present ...