Cut-off analysis of 19-cell Yb-doped double-cladding rod-type photonic crystal fibers
Federica Poli, Enrico Coscelli, Thomas Tanggaard Alkeskjold, D. Passaro, Annamaria Cucinotta, Lasse Leick, Jes Broeng, Stefano Selleri
Abstract
Federica Poli, Enrico Coscelli, Thomas Tanggaard Alkeskjold, D. Passaro, Annamaria Cucinotta, Lasse Leick, Jes Broeng, Stefano Selleri
Abstract
Yb-doped double-cladding large mode area rod-type photonic crystal fibers are a key component for power scaling in fiber laser systems. Recently, designs with 19-cell core defect, that is with 19 missing air-holes in the center of the photonic crystal cladding, have been proposed, with reported core diameter up to 100 μm. In this paper an analysis of the cut-off wavelength of the first high-order mode in such low-NA fibers is reported, accounting for different approaches for the definition of the cladding effective index. Results have shown that taking into account the finite fiber cross-section and considering the first cladding mode of the actual fiber is mandatory to obtain a correct estimate of the cut-off wavelength.
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Yb-doped double-cladding large mode area rod-type photonic crystal fibers are a key component for power scaling in fiber laser systems. Recently, designs with 19-cell core defect, that is with 19 missing air-holes in the center of the photonic crystal cladding, have been proposed, with reported core diameter up to 100 μm. In this paper an analysis of the cut-off wavelength of the first high-order mode in such low-NA fibers is reported, accounting for different approaches for the definition of the cladding effective index. Results have shown that taking into account the finite fiber cross-section and considering the first cladding mode of the actual fiber is mandatory to obtain a correct estimate of the cut-off wavelength.
Key concepts: Cladding (metalworking), Photonic-crystal fiber, Materials science, All-silica fiber, Optics, Plastic-clad silica fiber, Hard-clad silica optical fiber, Double-clad fiber