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  4. Fabrication and Characteristics of Yb-Doped Silica Fibers Produced by the Sol-Gel Based Granulated Silica Method
 
research article

Fabrication and Characteristics of Yb-Doped Silica Fibers Produced by the Sol-Gel Based Granulated Silica Method

El Sayed, Ali
•
Pilz, Soenke
•
Najafi, Hossein  
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December 1, 2018
Fibers

Combining the sol-gel method for fiber material production with the granulated silica method for preform assembly results in a robust method that offers a high degree of freedom regarding both the composition and the geometry of the produced fiber. Using this method, two types of Yb-doped silica glass composition, that feature an excess in P concentration with respect to Al, have been prepared. The elemental distributions in a fiber core were analyzed by scanning transmission electron microscopy (STEM). The elemental mapping shows a similar localization of Al, P and Yb through the microstructure. In addition, the influence of the variation in the co-dopant concentration, with respect to Yb, on the fiber properties has been investigated. The results show an increase in the refractive index step and in the fiber's transmission loss as the excess concentration of P increases. A significant contribution to the losses can be assigned to the existence of impurities such as iron, which was detected in our samples by mass spectrometer. Single exponential fluorescence decays with lifetimes of around 0.88 ms were measured for the two compositions. Finally, pumping at 976 nm a laser slope efficiency of 67% at 1031 nm was achieved for one of the fiber compositions.

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Type
research article
DOI
10.3390/fib6040082
Web of Science ID

WOS:000455068600015

Author(s)
El Sayed, Ali
Pilz, Soenke
Najafi, Hossein  
Alexander, Duncan T. L.  
Hochstrasser, Martin
Romano, Valerio
Date Issued

2018-12-01

Published in
Fibers
Volume

6

Issue

4

Start page

82

Subjects

Materials Science, Textiles

•

Materials Science

•

fiber lasers

•

yb-doped materials

•

rare-earth (re) clusters

•

optical properties

•

sol-gel

•

sol-gel based granulated silica method

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optical-fibers

•

glasses

•

fluorescence

•

dissolution

•

dopants

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power

•

sio2

Note

This is an open access article under the terms of the Creative Commons Attribution License

Editorial or Peer reviewed

REVIEWED

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Available on Infoscience
January 23, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/153840
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