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Effect of chloride ion introduction on structural and 1.5 μm emission properties in Er 3 + -doped fluorophosphate glass

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Abstract

Effects of chloride ion introduction on structural and 1.5μm emission properties in Er3+-doped fluorophosphate have been investigated. The structural changes revealed by the measured Raman spectra indicate that the chloride ions have an important influence on the phonon density of host glasses. With increasing chloride content, the phonon density of fluorophosphate glasses decreases. The chloride modified fluorophosphate glasses possessing higher thermal stability are suitable for broadband amplifier fiber fabrication. Desirable thermal resistance properties and spectroscopic characteristics of Er3+-doped chloride fluorophosphate glass indicate that it is a promising material for 1.5μm lasers.

© 2011 Optical Society of America

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Corrections

Ying Tian, Rongrong Xu, Lili Hu, and Junjie Zhang, "Effect of chloride ion introduction on structural and 1.5 μm emission properties in Er3+-doped fluorophosphate glass: publisher’s note," J. Opt. Soc. Am. B 28, 2701-2701 (2011)
https://opg.optica.org/josab/abstract.cfm?uri=josab-28-11-2701

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Effect of chloride ion introduction on structural and 1.5 μm emission properties in Er3+-doped fluorophosphate glass: publisher’s note

Ying Tian, Rongrong Xu, Lili Hu, and Junjie Zhang
J. Opt. Soc. Am. B 28(11) 2701-2701 (2011)

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