Upconversion and migration in erbium-doped silica waveguides in the continuous-wave excitation switch-off regime
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.65.233104/fulltext
Reference6 articles.
1. Clustering in erbium‐doped silica glass fibers analyzed using 980 nm excited‐state absorption
2. Observation of strongly nonquadratic homogeneous upconversion in Er/sup 3+/-doped silica fibers and reevaluation of the degree of clustering
3. Evaluation of parasitic upconversion mechanisms in Er/sup 3+/-doped silica-glass fibers by analysis of fluorescence at 980 nm
4. Monte Carlo simulations of homogeneous upconversion in erbium-doped silica glasses
5. Statistical model for energy-transfer-induced up-conversion inEr3+-doped glasses
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1. Study of upconversion in highly Er-doped photonic crystal fibers through laser-transient dynamics;Laser Physics;2014-08-22
2. Dynamic Characterization of Upconversion in Highly Er-Doped Silica Photonic Crystal Fibers;IEEE Journal of Quantum Electronics;2012-08
3. Upconversion assisted self-pulsing in a high-concentration erbium doped fibre laser;Open Physics;2010-01-01
4. Spectroluminescence properties of photothermorefractive nanoglass-ceramics doped with ytterbium and erbium ions;Journal of Optical Technology;2008-10-01
5. Migration-assisted nonlinear quenching in random media;Journal of the Optical Society of America B;2007-06-15
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