3D printed Er-doped silica fibre by Direct Ink Writing
3D printed Er-doped silica fibre by Direct Ink Writing
We present a 3D printed Er-doped silica optical fibre produced by direct ink writing (DIW) method. The optical characterisation of the multimode, 50/100µm (core/clad), Er-doped fibre is reported.
European Physical Society
Camacho Rosales, Angeles
43b6e6a5-9a41-441a-bb67-5cde1d2ad67c
Sahu, Jayanta
009f5fb3-6555-411a-9a0c-9a1b5a29ceb2
Núñez-Velázquez, Martin Miguel Angel
3c102956-ac51-4d02-9fe6-6628557cfbff
15 September 2020
Camacho Rosales, Angeles
43b6e6a5-9a41-441a-bb67-5cde1d2ad67c
Sahu, Jayanta
009f5fb3-6555-411a-9a0c-9a1b5a29ceb2
Núñez-Velázquez, Martin Miguel Angel
3c102956-ac51-4d02-9fe6-6628557cfbff
Camacho Rosales, Angeles
(2020)
3D printed Er-doped silica fibre by Direct Ink Writing.
Sahu, Jayanta and Núñez-Velázquez, Martin Miguel Angel
(eds.)
In Europhoton 2020.
European Physical Society.
1 pp
.
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Conference or Workshop Item
(Paper)
Abstract
We present a 3D printed Er-doped silica optical fibre produced by direct ink writing (DIW) method. The optical characterisation of the multimode, 50/100µm (core/clad), Er-doped fibre is reported.
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Accepted/In Press date: 8 July 2020
Published date: 15 September 2020
Identifiers
Local EPrints ID: 442883
URI: http://eprints.soton.ac.uk/id/eprint/442883
PURE UUID: ce51e3f3-4239-4c61-9ad1-1094b50740d4
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Date deposited: 28 Sep 2020 16:33
Last modified: 30 Nov 2024 02:39
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Contributors
Author:
Angeles Camacho Rosales
Editor:
Jayanta Sahu
Editor:
Martin Miguel Angel Núñez-Velázquez
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