Journal of Lightwave Technology · 1988 · 90 citations · 11 references
Optical MaterialsEngineeringPromising IonsLaser ApplicationsIon Beam InstrumentationFiber OpticsChemistryHigh-power LasersRare Earth IonsOptical PropertiesFluorescence SpectraFiber LaserMaterials SciencePhotonicsOptical PumpingPhysicsFiber Optic SensingFiber ChemistryLaser MaterialsSilica-based Monomode FiberFiber OpticSilica-based Optical FibersNatural SciencesSpectroscopyApplied PhysicsRare-earth IonsActive FibersOptoelectronics
Rare-earth ions have been systematically incorporated into the cores of silica-based optical fibers, and the absorption and fluorescence spectra have been measured. The results provide basic data for a wide range of possible future fiber-based devices. For specific telecommunications applications, ions that could be useful for sources in the 1.3- mu m and 1.5- mu m low-loss windows are identified. It is suggested that Er/sup 3+/, Nd/sup 3+/, and Tm/sup 3+/ are the most promising ions for semiconductor pumping with GaAs-based laser diodes.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
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Neodymium-doped silica single-mode fibre lasers
R.J. Mears, L. Reekie, Stephen Poole et al. · Electronics Letters · 1985 · 218 citations
Low-threshold tunable CW and <i>Q</i> -switched fibre laser operating at 1.55 μm
R.J. Mears, L. Reekie, Stephen Poole et al. · Electronics Letters · 1986 · 183 citations
Distributed temperature sensor using Nd <sup>3+</sup> -doped optical fibre
M.C. Farries, M. E. Fermann, R.I. Laming et al. · Electronics Letters · 1986 · 91 citations