We design, fabricate, and demonstrate the first hollow-core air-gap anti-resonant fiber coupler in a dual hollow-core anti-resonant fiber (DHAF) structure. The coupling takes place through an air gap between air cores, promising a limitless operation window beyond material transmission. The DHAF follows the same waveguide mechanism as the hollow-core anti-resonant fiber (HAF). The coupling is attainable over the entire transmission bands determined by a resonant frequency of a HAF. A coupling length, thus coupling strength, is controllable by adjusting fiber design parameters. In addition, at a fixed design and length, the coupling strength linearly responds to longitudinal mechanical tension, enabling continuous variable coupling ratio in ...
An improved design for hollow core anti-resonant fibers (HAFs) is presented. A split cladding struct...
International audienceIn this talk, we report on recent developments on inhibited-coupling guiding h...
International audienceIn this talk, we report on recent developments on inhibited-coupling guiding h...
Hollow core photonic crystal fibres (HC-PCFs) have promising applications in high power beam deliver...
We theoretically explore the fundamental limits on the efficiency of coupling light into hollow-core...
While hollow core-photonic crystal fibres are now a well-established fibre technology, the majority ...
While hollow core-photonic crystal fibres are now a well-established fibre technology, the majority ...
While hollow core-photonic crystal fibres are now a well-established fibre technology, the majority ...
The hollow-core photonic crystal fibres (HC-PCFs) are a newly developed branch of optical fibres wi...
Today hollow-core optical fibers (HCF) are on the verge of surpassing the attenuation benchmark of s...
We show results on adopting our new technique, developed for connecting solid-core fibers with hollo...
Hollow-core anti-resonant fiber technology has made a rapid progress in low loss broadband transmiss...
We present the selective excitation of the fundamental mode in an anti-resonant hollow-core fiber (A...
An improved design for hollow core anti-resonant fibers (HAFs) is presented. A split cladding struct...
Optical amplification in a hollow core fiber is typically realised by filling the fiber with a gas a...
An improved design for hollow core anti-resonant fibers (HAFs) is presented. A split cladding struct...
International audienceIn this talk, we report on recent developments on inhibited-coupling guiding h...
International audienceIn this talk, we report on recent developments on inhibited-coupling guiding h...
Hollow core photonic crystal fibres (HC-PCFs) have promising applications in high power beam deliver...
We theoretically explore the fundamental limits on the efficiency of coupling light into hollow-core...
While hollow core-photonic crystal fibres are now a well-established fibre technology, the majority ...
While hollow core-photonic crystal fibres are now a well-established fibre technology, the majority ...
While hollow core-photonic crystal fibres are now a well-established fibre technology, the majority ...
The hollow-core photonic crystal fibres (HC-PCFs) are a newly developed branch of optical fibres wi...
Today hollow-core optical fibers (HCF) are on the verge of surpassing the attenuation benchmark of s...
We show results on adopting our new technique, developed for connecting solid-core fibers with hollo...
Hollow-core anti-resonant fiber technology has made a rapid progress in low loss broadband transmiss...
We present the selective excitation of the fundamental mode in an anti-resonant hollow-core fiber (A...
An improved design for hollow core anti-resonant fibers (HAFs) is presented. A split cladding struct...
Optical amplification in a hollow core fiber is typically realised by filling the fiber with a gas a...
An improved design for hollow core anti-resonant fibers (HAFs) is presented. A split cladding struct...
International audienceIn this talk, we report on recent developments on inhibited-coupling guiding h...
International audienceIn this talk, we report on recent developments on inhibited-coupling guiding h...