We describe and demonstrate an interferometric side-scattering technique for measuring the microstructure geometry of nested antiresonant hollow-core fiber (NANF). Using this technique, we are able to non-invasively measure the diameters of all the thin tubular capillaries in a NANF with sub-micron accuracy.</p
Hollow-core anti-resonant fiber technology has made a rapid progress in low loss broadband transmiss...
Hollow-core antiresonant fibers operating in the ultraviolet to mid-infrared regions are currently o...
We show the exploration of higher order core mode content in various designs of anti-resonant hollow...
We present a side-scattering method for accurate, rapid and non-destructive measurement of double ne...
Antiresonant hollow core optical fibres (ARFs) are an exciting new technology, with the potential to...
Single-ring hollow-core photonic crystal fibers, consisting of a ring of one or two thin-walled glas...
We report an antiresonant hollow core fiber formed of 7 non-Touching capillaries with inner tubes. T...
We analyze the higher-order core mode content in various designs of antiresonant hollow core fibers ...
We propose a novel hollow core fiber design based on nested and non-touching antiresonant tube eleme...
Capillary optical fibers with hole diameters of several micrometers are important for novel plasmoni...
In this work, we report how tube lattice hollow-core fibers can be successfully used to build sensor...
International audienceWe report the fabrication and characterization of the first double clad tubula...
We present a theoretical analysis into the fundamental physical mechanisms contributing to backscatt...
International audienceWe present optical and atomic force microscopy measurements of the roughness o...
Abstract In this study, we present speed and displacement measurements of micro-fluid in a hollow-co...
Hollow-core anti-resonant fiber technology has made a rapid progress in low loss broadband transmiss...
Hollow-core antiresonant fibers operating in the ultraviolet to mid-infrared regions are currently o...
We show the exploration of higher order core mode content in various designs of anti-resonant hollow...
We present a side-scattering method for accurate, rapid and non-destructive measurement of double ne...
Antiresonant hollow core optical fibres (ARFs) are an exciting new technology, with the potential to...
Single-ring hollow-core photonic crystal fibers, consisting of a ring of one or two thin-walled glas...
We report an antiresonant hollow core fiber formed of 7 non-Touching capillaries with inner tubes. T...
We analyze the higher-order core mode content in various designs of antiresonant hollow core fibers ...
We propose a novel hollow core fiber design based on nested and non-touching antiresonant tube eleme...
Capillary optical fibers with hole diameters of several micrometers are important for novel plasmoni...
In this work, we report how tube lattice hollow-core fibers can be successfully used to build sensor...
International audienceWe report the fabrication and characterization of the first double clad tubula...
We present a theoretical analysis into the fundamental physical mechanisms contributing to backscatt...
International audienceWe present optical and atomic force microscopy measurements of the roughness o...
Abstract In this study, we present speed and displacement measurements of micro-fluid in a hollow-co...
Hollow-core anti-resonant fiber technology has made a rapid progress in low loss broadband transmiss...
Hollow-core antiresonant fibers operating in the ultraviolet to mid-infrared regions are currently o...
We show the exploration of higher order core mode content in various designs of anti-resonant hollow...