Enhanced pump absorption of active fiber components with skew rays
Enhanced pump absorption of active fiber components with skew rays
We propose a model and then demonstrate a technique that can be used to optimize pump absorption in active multimode fibers with different cladding geometries, by varying the angle of pump light excitation. The analysis of the contribution of different ray groups at different wavelengths enables the design optimization of active and passive fiber components in fiber lasers.
5642-5650
Chen, George Y.
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Codemard, Christophe A.
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Zervas, Michael N.
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Monro, Tanya M.
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Lancaster, David G.
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1 December 2016
Chen, George Y.
b766d3f7-a6dc-4c15-8f00-17ad044348c1
Codemard, Christophe A.
3aa50483-b61c-4e7e-b178-c9a88bb47bef
Zervas, Michael N.
1840a474-dd50-4a55-ab74-6f086aa3f701
Monro, Tanya M.
7ab5cdd0-7271-4145-90af-164ffeafcca7
Lancaster, David G.
0da3016b-2efc-495b-9bc4-a467f232138e
Chen, George Y., Codemard, Christophe A., Zervas, Michael N., Monro, Tanya M. and Lancaster, David G.
(2016)
Enhanced pump absorption of active fiber components with skew rays.
Journal of Lightwave Technology, 34 (24), .
(doi:10.1109/JLT.2016.2616410).
Abstract
We propose a model and then demonstrate a technique that can be used to optimize pump absorption in active multimode fibers with different cladding geometries, by varying the angle of pump light excitation. The analysis of the contribution of different ray groups at different wavelengths enables the design optimization of active and passive fiber components in fiber lasers.
Text
JLT 34 5642 2016 Chen Codemard Monro Zervas
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Accepted/In Press date: 8 October 2016
e-pub ahead of print date: 11 October 2016
Published date: 1 December 2016
Organisations:
Optoelectronics Research Centre
Identifiers
Local EPrints ID: 410449
URI: http://eprints.soton.ac.uk/id/eprint/410449
PURE UUID: b7b91d69-f102-400a-a1e1-8a7cc85e70f2
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Date deposited: 08 Jun 2017 16:31
Last modified: 16 Mar 2024 02:41
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Contributors
Author:
George Y. Chen
Author:
Christophe A. Codemard
Author:
Michael N. Zervas
Author:
Tanya M. Monro
Author:
David G. Lancaster
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