© 2015 Optical Society of America. A structured optical fiber is drawn from a 3D-printed structured preform. Preforms containing a single ring of holes around the core are fabricated using filament made from a modified butadiene polymer. More broadly, 3D printers capable of processing soft glasses, silica, and other materials are likely to come on line in the not-so-distant future. 3D printing of optical preforms signals a new milestone in optical fiber manufacture
Recent progress in the field of 3D-printed photonic devices and their tremendous potential in sensin...
International audienceThe elaboration of chalcogenide microstructured optical fibers (MOFs) permits ...
This paper reports the first microstructured solid-core fiber drawn from a 3D-printed preform and th...
© 2015 SPIE. We report the first optical fibre drawn from a 3D-printed preform. An air-structured po...
The entry of additive manufacture, or 3D printing, into optical fibre fabrication will disrupt the s...
Microstructured polymer optical fibers (MPOFs) have long attracted great interest due to their wide ...
The increasing demand for novel fiber design has brought major challenges with the current fabricati...
The increasing demand for novel fiber design has brought major challenges with the current fabricati...
New generation of optical fibres faces the challenge of multiple step processes due to the need of p...
Recent progress in the field of 3D-printed photonic devices and their tremendous potential in sensin...
Optical preforms and fibres manufacturing face numerous challenges with the demand for novel fibre d...
The fabrication of the new generation of optical fibres faces important challenges due to the comple...
High performance communications, sensing and computing systems are growing exponentially as...
A 3D printing technique for manufacturing air-clad coherent fiber optic faceplates is presented. The...
Three-dimensional (3D) printing or additive manufacturing (AM) is revolutionising manufacturing in m...
Recent progress in the field of 3D-printed photonic devices and their tremendous potential in sensin...
International audienceThe elaboration of chalcogenide microstructured optical fibers (MOFs) permits ...
This paper reports the first microstructured solid-core fiber drawn from a 3D-printed preform and th...
© 2015 SPIE. We report the first optical fibre drawn from a 3D-printed preform. An air-structured po...
The entry of additive manufacture, or 3D printing, into optical fibre fabrication will disrupt the s...
Microstructured polymer optical fibers (MPOFs) have long attracted great interest due to their wide ...
The increasing demand for novel fiber design has brought major challenges with the current fabricati...
The increasing demand for novel fiber design has brought major challenges with the current fabricati...
New generation of optical fibres faces the challenge of multiple step processes due to the need of p...
Recent progress in the field of 3D-printed photonic devices and their tremendous potential in sensin...
Optical preforms and fibres manufacturing face numerous challenges with the demand for novel fibre d...
The fabrication of the new generation of optical fibres faces important challenges due to the comple...
High performance communications, sensing and computing systems are growing exponentially as...
A 3D printing technique for manufacturing air-clad coherent fiber optic faceplates is presented. The...
Three-dimensional (3D) printing or additive manufacturing (AM) is revolutionising manufacturing in m...
Recent progress in the field of 3D-printed photonic devices and their tremendous potential in sensin...
International audienceThe elaboration of chalcogenide microstructured optical fibers (MOFs) permits ...
This paper reports the first microstructured solid-core fiber drawn from a 3D-printed preform and th...