We present theoretical and experimental investigations on effective single-transverse mode propagation in very large mode area (VLMA) fibers. Upscaling the mode area of fibers is the most effective approach to reduce the nonlinear interaction and, therefore, to allow for the confinement of high-power radiation without detrimental nonlinear effects. Even though the investigations are carried out in a passive large pitch fiber (LPF), they reveal an intrinsic scaling potential of this design which, if unlocked, will be beneficial for active VLMA fibers in the future. A commercial mode solver based on a full-vectorial finite-difference approach has been used to simulate the confinement losses of the fundamental and higher-order transverse modes...
International audienceEvolutions of fully-aperiodic large-pitch-fibers employing stress-applying par...
We report on an ytterbium-doped photonic crystal fiber with a core diameter of 60 µm and mode-field-...
International audienceWe report in this communication on the investigation of novel triple-clad Very...
In this Letter, we present, to the best of our knowledge, the largest effective single-mode fiber re...
International audienceIn this paper, we demonstrate a single-polarization feature out of passive ver...
We experimentally investigated the limits to the endlessly single-modeness of large mode area photon...
A scalable fiber design for ytterbium-doped high performance fiber lasers and amplifiers will be pre...
We review our recent work toward designing large mode area fibers for high power applications. We sh...
Ytterbium-doped Large Pitch Fibers with very large mode areas are investigated in a high power fiber...
Large-pitch photonic-crystal fibers have demonstrated their unique capability of combining very larg...
International audienceWe report here on the first experimental demonstration, to the best of our kno...
Fiber lasers and fiber amplifiers have experienced considerable improvements in recent years and dem...
Ytterbium-doped large-pitch fibers with very large mode areas are investigated in a high-power fiber...
Fiber lasers are a highly regarded solid-state laser concept due to their high efficiency, beam qual...
Photonic-Crystal Fibers (PCF) are among the most promising concepts to achieve large mode field area...
International audienceEvolutions of fully-aperiodic large-pitch-fibers employing stress-applying par...
We report on an ytterbium-doped photonic crystal fiber with a core diameter of 60 µm and mode-field-...
International audienceWe report in this communication on the investigation of novel triple-clad Very...
In this Letter, we present, to the best of our knowledge, the largest effective single-mode fiber re...
International audienceIn this paper, we demonstrate a single-polarization feature out of passive ver...
We experimentally investigated the limits to the endlessly single-modeness of large mode area photon...
A scalable fiber design for ytterbium-doped high performance fiber lasers and amplifiers will be pre...
We review our recent work toward designing large mode area fibers for high power applications. We sh...
Ytterbium-doped Large Pitch Fibers with very large mode areas are investigated in a high power fiber...
Large-pitch photonic-crystal fibers have demonstrated their unique capability of combining very larg...
International audienceWe report here on the first experimental demonstration, to the best of our kno...
Fiber lasers and fiber amplifiers have experienced considerable improvements in recent years and dem...
Ytterbium-doped large-pitch fibers with very large mode areas are investigated in a high-power fiber...
Fiber lasers are a highly regarded solid-state laser concept due to their high efficiency, beam qual...
Photonic-Crystal Fibers (PCF) are among the most promising concepts to achieve large mode field area...
International audienceEvolutions of fully-aperiodic large-pitch-fibers employing stress-applying par...
We report on an ytterbium-doped photonic crystal fiber with a core diameter of 60 µm and mode-field-...
International audienceWe report in this communication on the investigation of novel triple-clad Very...