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Cooperative luminescence and absorption in Ytterbium-doped silica fiber and the fiber nonlinear transmission coefficient lambda=980 nm with a regard to the Ytterbium ion-pairs' effect: comment

Cooperative luminescence and absorption in Ytterbium-doped silica fiber and the fiber nonlinear transmission coefficient lambda=980 nm with a regard to the Ytterbium ion-pairs' effect: comment
Cooperative luminescence and absorption in Ytterbium-doped silica fiber and the fiber nonlinear transmission coefficient lambda=980 nm with a regard to the Ytterbium ion-pairs' effect: comment
Recently, significant power losses in ytterbium-doped fibers have been interpreted as resulting from the formation of ytterbium ion pairs [A. V. Kir’yanov et al., Opt. Express 14, 3981 (2006)]. However, there appears to be strong evidence against this model.
fiber optics and optical communications, fiber characterization, rare-earth-doped materials, multiphoton processes, nonlinear optics, fibers
1094-4087
6981-6982
Paschotta, R.
d9e3d753-48c1-405f-b31e-e662f23a70a4
Tropper, A.C.
f3505426-e0d5-4e91-aed3-aecdb44b393c
Paschotta, R.
d9e3d753-48c1-405f-b31e-e662f23a70a4
Tropper, A.C.
f3505426-e0d5-4e91-aed3-aecdb44b393c

Paschotta, R. and Tropper, A.C. (2006) Cooperative luminescence and absorption in Ytterbium-doped silica fiber and the fiber nonlinear transmission coefficient lambda=980 nm with a regard to the Ytterbium ion-pairs' effect: comment. Optics Express, 14 (15), 6981-6982. (doi:10.1364/OE.14.006981).

Record type: Article

Abstract

Recently, significant power losses in ytterbium-doped fibers have been interpreted as resulting from the formation of ytterbium ion pairs [A. V. Kir’yanov et al., Opt. Express 14, 3981 (2006)]. However, there appears to be strong evidence against this model.

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Published date: 2006
Keywords: fiber optics and optical communications, fiber characterization, rare-earth-doped materials, multiphoton processes, nonlinear optics, fibers

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Local EPrints ID: 57533
URI: http://eprints.soton.ac.uk/id/eprint/57533
ISSN: 1094-4087
PURE UUID: f2f86637-8104-4235-929c-2b8d881fdb21

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Date deposited: 15 Aug 2008
Last modified: 15 Mar 2024 11:07

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Contributors

Author: R. Paschotta
Author: A.C. Tropper

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