International audienceWe report on the experimental development of short-tapered chalcogenide-glass rods for mid-infrared supercontinuum generation. Multi-octave spectral broadening of femtosecond laser pulses is demonstrated from 1.6 to 15.6 µm in a 5-cm-long tapered Ge 20 Se 70 Te 10 rod with a waist diameter of 25 µm. Despite the multimode nature of the optical waveguide used, this work clearly shows the potential of such simple post-processed rods for advancing fiber SC sources with infrared glasses, thereby unlocking new possibilities in terms of coupling efficiency, spectral coverage, and output power
International audienceMid-infrared supercontinuum spanning from 1.8-9 um with an output power of 41....
We have produced ≈20mW of mid-infrared super continuum spanning from 1750nm to ≈8000nm spanning usin...
Research efforts devoted to supercontinuum (SC) light sources in a fiber-format spanning the mid-inf...
International audienceWe report on the experimental development of short-tapered chalcogenide-glass ...
We experimentally demonstrate that simple tapered Ge-Se-Te glass rods with femtosecond pumping enabl...
International audienceWe demonstrate the first experimental wavelength broadening of mid-infrared su...
We demonstrate infrared supercontinuum generation over more than one octave (0.85 - 2.35 μm) produce...
Chalcogenide glasses have the advantages of a wide transparency window (over 20 μm) and high opti...
We report the generation of a mid-IR supercontinuum created by passing ≈8psec duration pulses at ≈32...
International audienceMid-infrared supercontinuum sources are particularly important for identifying...
International audienceWe demonstrate the fabrication of arsenic-and antimony-free chalcogenide glass...
Mid-infrared supercontinuum generation (SCG) is mostly studied in fluoride glass fibers in which lon...
A mid-IR supercontinuum spanning over 1-3.2 μm is generated through pumping highly nonlinear robust ...
The development of optical sources and components suitable for the mid-infrared is crucial for appli...
Bright, broadband, mid-infrared (MIR) sources are useful for microscopy and spectroscopy as wel...
International audienceMid-infrared supercontinuum spanning from 1.8-9 um with an output power of 41....
We have produced ≈20mW of mid-infrared super continuum spanning from 1750nm to ≈8000nm spanning usin...
Research efforts devoted to supercontinuum (SC) light sources in a fiber-format spanning the mid-inf...
International audienceWe report on the experimental development of short-tapered chalcogenide-glass ...
We experimentally demonstrate that simple tapered Ge-Se-Te glass rods with femtosecond pumping enabl...
International audienceWe demonstrate the first experimental wavelength broadening of mid-infrared su...
We demonstrate infrared supercontinuum generation over more than one octave (0.85 - 2.35 μm) produce...
Chalcogenide glasses have the advantages of a wide transparency window (over 20 μm) and high opti...
We report the generation of a mid-IR supercontinuum created by passing ≈8psec duration pulses at ≈32...
International audienceMid-infrared supercontinuum sources are particularly important for identifying...
International audienceWe demonstrate the fabrication of arsenic-and antimony-free chalcogenide glass...
Mid-infrared supercontinuum generation (SCG) is mostly studied in fluoride glass fibers in which lon...
A mid-IR supercontinuum spanning over 1-3.2 μm is generated through pumping highly nonlinear robust ...
The development of optical sources and components suitable for the mid-infrared is crucial for appli...
Bright, broadband, mid-infrared (MIR) sources are useful for microscopy and spectroscopy as wel...
International audienceMid-infrared supercontinuum spanning from 1.8-9 um with an output power of 41....
We have produced ≈20mW of mid-infrared super continuum spanning from 1750nm to ≈8000nm spanning usin...
Research efforts devoted to supercontinuum (SC) light sources in a fiber-format spanning the mid-inf...