Multimode planar polymer waveguides were fabricated on hybrid polymer nanoporous layers with a fast industrial aqueous-based method well adapted to coat large-surface plastic substrates and easily scalable up to economical mass production volumes. Using a fiber probe internal light source technique, we were able to measure quantitatively the modal propagation losses. In particular, attenuation coefficients lower than 0.5 dB/cm were found for the fundamental modes, thus showing the potential of our polymer nanoporous layers as optical isolation layers in waveguiding applications
Optical waveguides are one of the most important photonic components. They are indispensable tools i...
A robust polymeric waveguide technology is proposed for affordable optoelectronic interconnects in m...
ABSTRACT: Low-loss optical waveguides have been fabricated from fluorinated copolymers designed to i...
Optical waveguides are structures that confine and direct optical signals in a region of higher effe...
The physical-chemical properties of polymer films can be modified by embedding inorganic materials (...
Communication technologies today are increasingly reliant on the manipulation of optical signals whe...
International audienceIn order to obtain non-linear waveguides for all-optical signal processing, ne...
This paper reports on a technology for realization of an optical planar waveguide layer on duroid su...
Abstract—We report on advances in polymeric waveguide technologies developed worldwide for the telec...
We report the fabrication and characterization of a rib polymeric waveguide having a thick layer of ...
This article proposes a novel demonstration of a low-loss polymer channel hybridized with a titania ...
We realize low loss, single-mode polymer waveguides and microring resonators in SU-8 (MichroChem) us...
A novel waveguide concept is presented, which is applicable to a multitude of optical polymers. It a...
Graded-index waveguides are known to exhibit lower losses and considerably larger bandwidths compare...
Multicore, compact, and low-crosstalk polymer waveguides have been designed, fabricated, and charact...
Optical waveguides are one of the most important photonic components. They are indispensable tools i...
A robust polymeric waveguide technology is proposed for affordable optoelectronic interconnects in m...
ABSTRACT: Low-loss optical waveguides have been fabricated from fluorinated copolymers designed to i...
Optical waveguides are structures that confine and direct optical signals in a region of higher effe...
The physical-chemical properties of polymer films can be modified by embedding inorganic materials (...
Communication technologies today are increasingly reliant on the manipulation of optical signals whe...
International audienceIn order to obtain non-linear waveguides for all-optical signal processing, ne...
This paper reports on a technology for realization of an optical planar waveguide layer on duroid su...
Abstract—We report on advances in polymeric waveguide technologies developed worldwide for the telec...
We report the fabrication and characterization of a rib polymeric waveguide having a thick layer of ...
This article proposes a novel demonstration of a low-loss polymer channel hybridized with a titania ...
We realize low loss, single-mode polymer waveguides and microring resonators in SU-8 (MichroChem) us...
A novel waveguide concept is presented, which is applicable to a multitude of optical polymers. It a...
Graded-index waveguides are known to exhibit lower losses and considerably larger bandwidths compare...
Multicore, compact, and low-crosstalk polymer waveguides have been designed, fabricated, and charact...
Optical waveguides are one of the most important photonic components. They are indispensable tools i...
A robust polymeric waveguide technology is proposed for affordable optoelectronic interconnects in m...
ABSTRACT: Low-loss optical waveguides have been fabricated from fluorinated copolymers designed to i...