IR transmitting hollow waveguides are an attractive alternative to solid-core IR fibers. Hollow guides are made from plastic, metal, or glass tubes that have highly reflective coatings deposited on the inside surface. These guides have losses as low as 0.1 dB/m at 10.6 mm and may be bent to radii less than 5 cm. For use in high-power laser delivery applications the guides have been shown to be capable of transmitting up to 3 kW of CO2 laser power. They are also finding uses in both temperature and chemical fiber sensor applications. This paper reviews the progress in hollow waveguide technology with emphasis on the best guides available today
The possibility of guiding light in air has fascinated optical scientists and engineers since the da...
In this paper, we report on a novel hollow metallic fiber (HMF) design that offers low transmission ...
International audienceMid-infrared absorption spectroscopy is nowadays considered as a routine analy...
delivery systemsmust rely on the articulated motion Furthermore, there are no Fresnel reflection los...
A rugged flexible hollow-fiber waveguide that permits preservation of good transverse spatial cohere...
Single mode beam delivery in the mid-infrared spectral range 5.1-10.5 μm employing flexible hollow g...
Single mode beam delivery in the mid-infrared spectral range 5.1-10.5 μm employing flexible hollow g...
Single mode beam delivery in the mid-infrared spectral range 5.1-10.5 μm employing flexible hollow g...
A new generation of hollow waveguide (HWG) gas cells of unprecedented compact dimensions facilitatin...
The development of hollow core optical fibers (HCs) based on the antiresonant optical principle is g...
For over 50 years, pure or doped silica glass optical fibres have been an unrivalled platform for th...
A hollow waveguide mid-infrared gas sensor operating from 1000 cm{sup -1} to 4000 cm{sup -1} has bee...
A rugged flexible hollow-fiber waveguide that permits preservation of good transverse spatial cohere...
We introduce a new simple design of hollow-core microstructured fiber targeted to guide mid-infrared...
We report an overview of our recent progress in the design and fabrication of soft-glass based antir...
The possibility of guiding light in air has fascinated optical scientists and engineers since the da...
In this paper, we report on a novel hollow metallic fiber (HMF) design that offers low transmission ...
International audienceMid-infrared absorption spectroscopy is nowadays considered as a routine analy...
delivery systemsmust rely on the articulated motion Furthermore, there are no Fresnel reflection los...
A rugged flexible hollow-fiber waveguide that permits preservation of good transverse spatial cohere...
Single mode beam delivery in the mid-infrared spectral range 5.1-10.5 μm employing flexible hollow g...
Single mode beam delivery in the mid-infrared spectral range 5.1-10.5 μm employing flexible hollow g...
Single mode beam delivery in the mid-infrared spectral range 5.1-10.5 μm employing flexible hollow g...
A new generation of hollow waveguide (HWG) gas cells of unprecedented compact dimensions facilitatin...
The development of hollow core optical fibers (HCs) based on the antiresonant optical principle is g...
For over 50 years, pure or doped silica glass optical fibres have been an unrivalled platform for th...
A hollow waveguide mid-infrared gas sensor operating from 1000 cm{sup -1} to 4000 cm{sup -1} has bee...
A rugged flexible hollow-fiber waveguide that permits preservation of good transverse spatial cohere...
We introduce a new simple design of hollow-core microstructured fiber targeted to guide mid-infrared...
We report an overview of our recent progress in the design and fabrication of soft-glass based antir...
The possibility of guiding light in air has fascinated optical scientists and engineers since the da...
In this paper, we report on a novel hollow metallic fiber (HMF) design that offers low transmission ...
International audienceMid-infrared absorption spectroscopy is nowadays considered as a routine analy...