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Unveiling the advances and challenges in the development of Er<sup>3+</sup>-doped tellurite fiber with embedded Ag nanoparticles

Kraskowski, Iuliia; Nasser, Khaldoon; Korri, Juho; Närhi, Mikko; Gumenyuk, Regina; Othmani, Abdelhak; Boussard-Plédel, Catherine; Troles, Johann; Petit, Laeticia (2025-01-15)

 
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Kraskowski, Iuliia
Nasser, Khaldoon
Korri, Juho
Närhi, Mikko
Gumenyuk, Regina
Othmani, Abdelhak
Boussard-Plédel, Catherine
Troles, Johann
Petit, Laeticia
15.01.2025

JOURNAL OF THE AMERICAN CERAMIC SOCIETY
e20385
This publication is copyrighted. You may download, display and print it for Your own personal use. Commercial use is prohibited.
doi:10.1111/jace.20385
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Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202504073426

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Peer reviewed
Tiivistelmä
Er3+-doped fibers are widely used as 1.55 µm broadband optical amplifiers. Tellurite glasses are particularly suitable as a gain medium due to their lower phonon energy and better rare-earth solubility compared to silica glass. Various strategies, such as reducing the OH content and co-doping with silver nanoparticles (Ag NPs), are attempted to improve the spectroscopic properties. However, maintaining the glass drawability into fibers when developing glasses with improved spectroscopic properties remains a significant challenge. Indeed, it is confirmed that NH4HF2 can be added into the tellurite glass batch prior to the melting to reduce OH− content. However, the presence of remaining F in the glass is demonstrated to have a detrimental impact on the glass thermal properties preventing the drawing of this glass into fiber. The successful drawing of a single-index optical fiber from a tellurite glass preform heavily doped with Er3+ ions is reported for the first time. The Ag NPs are grown in the fiber using a thermal treatment at the glass transition temperature. The presence of the NPs is confirmed using a TEM and from the spectroscopic properties. The interaction between Er3+ ions and the Ag species offers potential for modifying the luminescence properties of the fiber.
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Kalevantie 5
PL 617
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Kalevantie 5
PL 617
33014 Tampereen yliopisto
oa[@]tuni.fi | Tietosuoja | Saavutettavuusseloste