Dynamics study of thermal activation of BAC-Si in bismuth/erbium-codoped optical fiber
Author:
Funder
National Natural Science Foundation of China
Science and Technology Commission of Shanghai Municipality
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference21 articles.
1. Optical amplification in bismuth-doped silica glass
2. Bismuth-doped optical fibers and fiber lasers for a spectral region of 1600–1800 nm
3. Bismuth and erbium codoped optical fiber with ultrabroadband luminescence across O-, E-, S-, C-, and L-bands
4. Topological Engineering of Photoluminescence Properties of Bismuth- or Erbium-Doped Phosphosilicate Glass of Arbitrary P2 O5 to SiO2 Ratio
5. Bi-doped fiber amplifiers and lasers [Invited]
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1. Experimental study on activating bismuth active centers in bismuth/erbium co-doped optical fiber by ionizing radiations;Optical Materials;2024-06
2. Recent advances in Bi-doped silica-based optical fibers: A short review;Journal of Non-Crystalline Solids: X;2022-12
3. Co-Doping Effect of Bismuth Ions on the Gain Characteristics of Er-Doped Silica Optical Fiber;IEEE Photonics Journal;2022-08
4. Impact of Thermal Quenching on Bi Active Center Photostability in Bi/Er Co-Doped Fiber;IEEE Photonics Technology Letters;2021-02-01
5. BAC Photobleaching in Bismuth-Doped and Bismuth/Erbium Co-Doped Optical Fibers;Bismuth - Fundamentals and Optoelectronic Applications;2020-12-02
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