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Published on: November 22, 2019
Progress in rare-earth-doped mid-infrared fiber lasers
Angela B Seddon1, Zhuoqi Tang, David Furniss
1Novel Photonic Glasses Group, George Green Institute for Electromagnetics Research, Electrical Systems and Optics Research Division, Faculty of Engineering, University Park, University of Nottingham, Nottingham NG7 2RD, UK. angela.seddon@nottingham ac.uk
None:
The progress, and current challenges, in fabricating rare-earth-doped chalcogenide-glass fibers for developing mid-infrared (IR) fiber lasers are reviewed. For the first time a coherent explanation is forwarded for the failure to date to develop a gallium-lanthanum-sulfide glass mid-IR fiber laser. For the more covalent chalcogenide glasses, the importance of optimizing the glass host and glass processing routes in order to minimize non-radiative decay and to avoid rare earth ion clustering and glass devitrification is discussed. For the first time a new idea is explored to explain an additional method of non-radiative depopulation of the excited state in the mid-IR that has not been properly recognized before: that of impurity multiphonon relaxation. Practical characterization of candidate selenide glasses is presented. Potential applications of mid-infrared fiber lasers are suggested.

