In-situ thermal/Brillouin characterization of a high-power fiber laser based on Brillouin optical time domain analysis
In-situ thermal/Brillouin characterization of a high-power fiber laser based on Brillouin optical time domain analysis
We demonstrate an in-situ thermal/Brillouin characterization of an ytterbium-doped fiber laser operating at 1.09 µm using a Brillouin optical time domain analysis technique, where we utilize 1.55 µm wavelength light as Brillouin pump and probe beams.
Jáuregui, C.
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Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
Nilsson, J.
f41d0948-4ca9-4b93-b44d-680ca0bf157b
Jeong, Y.
85777b88-d35d-4e46-addb-1894fde2385d
October 2008
Jáuregui, C.
1fc691e2-b7a2-4344-9f6d-dbc478499e3a
Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
Nilsson, J.
f41d0948-4ca9-4b93-b44d-680ca0bf157b
Jeong, Y.
85777b88-d35d-4e46-addb-1894fde2385d
Jáuregui, C., Richardson, D.J., Nilsson, J. and Jeong, Y.
(2008)
In-situ thermal/Brillouin characterization of a high-power fiber laser based on Brillouin optical time domain analysis.
FiO/LS 2008, Rochester, USA.
19 - 23 Oct 2008.
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Conference or Workshop Item
(Paper)
Abstract
We demonstrate an in-situ thermal/Brillouin characterization of an ytterbium-doped fiber laser operating at 1.09 µm using a Brillouin optical time domain analysis technique, where we utilize 1.55 µm wavelength light as Brillouin pump and probe beams.
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Published date: October 2008
Venue - Dates:
FiO/LS 2008, Rochester, USA, 2008-10-19 - 2008-10-23
Identifiers
Local EPrints ID: 65523
URI: http://eprints.soton.ac.uk/id/eprint/65523
PURE UUID: d9f5a80e-2e8c-4b8f-8536-68428966a8b6
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Date deposited: 20 Feb 2009
Last modified: 09 Feb 2023 02:39
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Contributors
Author:
C. Jáuregui
Author:
J. Nilsson
Author:
Y. Jeong
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