In this study, a novel tubular hollow-core fiber design with extended cladding structures aiming low transmission losses and dominant single-mode guidance in the infrared region is proposed. The fiber parameters are optimized to achieve low-loss operation at the target wavelength of 2μm, at which the emission spectrum of thulium-doped fiber lasers are centered. The confinement loss of the fundamental mode is found to be less than 0.02 dB/km in the near- and mid-infrared region, which makes the proposed design a strong alternative for conventional step-index silica optical fibers. Strong suppression of the higher order modes, and low bending sensitivity are also observed in the proposed design. The proposed fiber shows promising results to a...
International audienceInhibited-Coupling hollow-core optical fibers: the road for lower transmission...
In this paper, we report on a novel hollow metallic fiber (HMF) design that offers low transmission ...
In this paper, we report on a novel hollow metallic fiber (HMF) design that offers low transmission ...
In this study, a novel tubular hollow-core fiber design with extended cladding structures aiming low...
A new negative curvature hollow-core fiber with a compound cladding structure is proposed. Compared ...
Hollow-core negative curvature fibers can confine light within air core and have small nonlinearity ...
We introduce a novel design of anti-resonant fibers with negative-curvature square cores to be emplo...
Hollow-core negative curvature fibers have drawn lots of attention due to their attractive propertie...
We propose a novel design of hollow-core fiber for enhanced light guidance in the mid-infrared. The ...
International audienceWe report on inhibited-coupling hollow-core optical fibers exhibiting specific...
International audienceWe report on inhibited-coupling hollow-core optical fibers exhibiting specific...
International audienceWe report on inhibited-coupling hollow-core optical fibers exhibiting specific...
We report on inhibited-coupling hollow-core optical fibers exhibiting specific modal operation and l...
We report on inhibited-coupling hollow-core optical fibers exhibiting specific modal operation and l...
International audienceInhibited-Coupling hollow-core optical fibers: the road for lower transmission...
International audienceInhibited-Coupling hollow-core optical fibers: the road for lower transmission...
In this paper, we report on a novel hollow metallic fiber (HMF) design that offers low transmission ...
In this paper, we report on a novel hollow metallic fiber (HMF) design that offers low transmission ...
In this study, a novel tubular hollow-core fiber design with extended cladding structures aiming low...
A new negative curvature hollow-core fiber with a compound cladding structure is proposed. Compared ...
Hollow-core negative curvature fibers can confine light within air core and have small nonlinearity ...
We introduce a novel design of anti-resonant fibers with negative-curvature square cores to be emplo...
Hollow-core negative curvature fibers have drawn lots of attention due to their attractive propertie...
We propose a novel design of hollow-core fiber for enhanced light guidance in the mid-infrared. The ...
International audienceWe report on inhibited-coupling hollow-core optical fibers exhibiting specific...
International audienceWe report on inhibited-coupling hollow-core optical fibers exhibiting specific...
International audienceWe report on inhibited-coupling hollow-core optical fibers exhibiting specific...
We report on inhibited-coupling hollow-core optical fibers exhibiting specific modal operation and l...
We report on inhibited-coupling hollow-core optical fibers exhibiting specific modal operation and l...
International audienceInhibited-Coupling hollow-core optical fibers: the road for lower transmission...
International audienceInhibited-Coupling hollow-core optical fibers: the road for lower transmission...
In this paper, we report on a novel hollow metallic fiber (HMF) design that offers low transmission ...
In this paper, we report on a novel hollow metallic fiber (HMF) design that offers low transmission ...