Radiation damage of germanium‐doped silica glasses: Spectral simplification by photo‐ and thermal bleaching, spectral identification and microwave saturation characteristics
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.336955
Reference17 articles.
1. Defect centers in a germanium‐doped silica‐core optical fiber
2. Hydrogen diffusion and defect center in gamma-irradiated GeO2-doped optical fiber
3. ESR Study on E'-Centers Induced by Optical Fiber Drawing Process
4. ESR Study on E'-Centers Induced by Optical Fiber Drawing Process
5. Effects of densification conditions on the defect center concentration in germanium-doped silica optical fiber preforms
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1. Drug - carrier interaction in solid dispersions prepared by co-grinding and melt-quenching;Annales de Chimie Science des Matériaux;2004-01-31
2. Solid State Radical Recombination and Charge Transfer across the Boundary between Indomethacin and Silica under Mechanical Stress;Journal of Solid State Chemistry;2002-02
3. Mechanisms of Incipient Chemical Reaction between Ca(OH)2and SiO2under Moderate Mechanical Stressing;Journal of Solid State Chemistry;1996-03
4. UV and gamma radiation damage in silica glass and fibres doped with germanium and cerium;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;1992-03
5. A simultaneous electron paramagnetic resonance and optical absorption study of ultraviolet‐induced defect centers in Ge‐doped silica fibers;Journal of Applied Physics;1989-01-15
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