Indirect measurement of the magnitude of ion clustering at high doping densities in Er:ZBLAN fibers
Author:
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics,Statistical and Nonlinear Physics
Reference15 articles.
1. Tunable continuous-wave, room-temperature Er3+-doped ZrF4-based glass laser between 2.69 and 2.78μm
2. Tunable Diode Laser Spectroscopy: An Invited Review
3. The route toward a diode-pumped 1-W erbium 3-μm fiber laser
4. Continuous wave lasing at 2.7 μm in an erbium-doped fluorozirconate fibre
5. Energy transfer in Er3+/Pr3+-doped fluoride glass fibres and application to lasing at 2.7 μm
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1. Modeling the 3-Micron Class Er-Doped Fluoride Fiber Laser With a Cubic Energy Transfer Rate Dependence;IEEE Journal of Quantum Electronics;2024-04
2. Comparison of 970- and 790-nm pumping for a 2.8 μm, Er3+-doped ZBLAN fiber laser;Optical and Quantum Electronics;2023-12-02
3. 33.8 W Mid-infrared 2.8 μm Er-doped fiber laser with high optical efficiency;Results in Physics;2023-12
4. Ion clustering effect of an erbium-doped ZBLAN fiber laser at a 790-nm pump wavelength;2023 Opto-Electronics and Communications Conference (OECC);2023-07-02
5. Modeling of an Er3+-Doped ZBLAN Fiber Laser With Ion Clustering Effect;Journal of Lightwave Technology;2023-01-01
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