Optical fibers that support single mode operation while achieving large mode areas are key elements for scaling up optical powers and pulse energies of fiber lasers. Here we report on a study of the modal properties of a new-generation of polarization maintaining large-mode-area photonic crystal fibers based on the spectrally and spatially resolved (S2) imaging technique. A fiber designed for Tm fiber laser system single mode operation in the 2μm spectral range is demonstrated for coiling diameters smaller than 40cm. At shorter wavelengths in the 1.3μm range, efficient higher order mode suppression requires tide coiling to about 20cm diameters. © 2012 Copyright Society of Photo-Optical Instrumentation Engineers (SPIE)
We report on an ytterbium-doped photonic crystal fiber with a core diameter of 60 µm and mode-field-...
We experimentally investigated the limits to the endlessly single-modeness of large mode area photon...
We report on a 2.3 m long air-clad ytterbium-doped large-mode area photonic crystal fiber laser gene...
Optical fibers that support single mode operation while achieving large mode areas are key elements ...
Modal properties of a new-generation polarizing large-mode-area photonic crystal fiber are studied b...
Output performances of fiber-based optical systems, in particular fiber lasers and amplifiers, can b...
Output performances of fiber-based optical systems, in particular fiber lasers and amplifiers, can b...
Photonic crystal fibers provide increased range of mode-field diameters for passive and active fiber...
We demonstrate single-mode, highly polarized output from a thulium-doped photonic crystal fiber (PCF...
We report on an ytterbium-doped single-transverse-mode rodtype photonic crystal fiber that combines ...
We present several methods controlling light-emission properties in power-scalable fiber lasers, inc...
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In the last years a dramatic increase of the output power of rare-earth-doped fiber lasers and ampli...
Large-pitch photonic-crystal fibers have demonstrated their unique capability of combining very larg...
Photonic crystal fibers consisting of a solid fused silica core surrounded by a regular array of sub...
We report on an ytterbium-doped photonic crystal fiber with a core diameter of 60 µm and mode-field-...
We experimentally investigated the limits to the endlessly single-modeness of large mode area photon...
We report on a 2.3 m long air-clad ytterbium-doped large-mode area photonic crystal fiber laser gene...
Optical fibers that support single mode operation while achieving large mode areas are key elements ...
Modal properties of a new-generation polarizing large-mode-area photonic crystal fiber are studied b...
Output performances of fiber-based optical systems, in particular fiber lasers and amplifiers, can b...
Output performances of fiber-based optical systems, in particular fiber lasers and amplifiers, can b...
Photonic crystal fibers provide increased range of mode-field diameters for passive and active fiber...
We demonstrate single-mode, highly polarized output from a thulium-doped photonic crystal fiber (PCF...
We report on an ytterbium-doped single-transverse-mode rodtype photonic crystal fiber that combines ...
We present several methods controlling light-emission properties in power-scalable fiber lasers, inc...
The authors report the realisation of a new design for a large mode area monomode optical fibre. Thi...
In the last years a dramatic increase of the output power of rare-earth-doped fiber lasers and ampli...
Large-pitch photonic-crystal fibers have demonstrated their unique capability of combining very larg...
Photonic crystal fibers consisting of a solid fused silica core surrounded by a regular array of sub...
We report on an ytterbium-doped photonic crystal fiber with a core diameter of 60 µm and mode-field-...
We experimentally investigated the limits to the endlessly single-modeness of large mode area photon...
We report on a 2.3 m long air-clad ytterbium-doped large-mode area photonic crystal fiber laser gene...