Developing new rare-earth ion-doped optical fibres for power amplifiers and lasers requires continuous improvements in fibre spectroscopic properties. To overcome some limitations inherent to silica glass, it is proposed to embed rare-earth ions in dielectric nanoparticles. In this article we focus on the modifications of the Er3+ ion...
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October 1, 2014 (v1)Journal articleUploaded on: March 25, 2023
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November 14, 2013 (v1)Conference paper
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Uploaded on: October 11, 2023 -
July 7, 2013 (v1)Conference paper
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Uploaded on: December 2, 2022 -
July 7, 2013 (v1)Conference paper
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Uploaded on: October 11, 2023 -
November 14, 2013 (v1)Conference paper
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Uploaded on: December 3, 2022 -
2008 (v1)Journal article
The development of materials for optical signal processing represents a major issue in present technology. In this contribution we present a study on Er-doped fiber preforms where particular attention is devoted on how the addition of CaO in the glass modifies the local environment of the rare earth. The results from photoluminescence and...
Uploaded on: December 3, 2022 -
December 7, 2016 (v1)Journal article
The incorporation site of Er dopants inserted at high and low concentration (respectively 5 and 0.5 mol %) in nanoparticles of CaF 2 is studied by X-ray Absorption Spectroscopy (XAS) at the Er L III edge. The experimental data are compared with the results of structural modeling based on Density Functional Theory (DFT). DFT-based molecular...
Uploaded on: February 28, 2023