Design and demonstration of an all-fiber tandem pumped master oscillator power amplifier
Design and demonstration of an all-fiber tandem pumped master oscillator power amplifier
We present simulations for an all-fiber tandem pumping configuration and demonstrate kW-level output through a careful management of the in-band pump power level. Experimental results are also presented for a booster amplifier at 1030 nm.
Panbiharwala, Y.
5441a3f1-418d-4bfd-85f0-6f74e39674f6
Yang, Pengling
3e934605-c015-49f3-836e-1b8f75645568
Nilsson, J.
f41d0948-4ca9-4b93-b44d-680ca0bf157b
Srinivasan, B.
ffe2fca6-8ac4-4cec-8769-93a696465073
2016
Panbiharwala, Y.
5441a3f1-418d-4bfd-85f0-6f74e39674f6
Yang, Pengling
3e934605-c015-49f3-836e-1b8f75645568
Nilsson, J.
f41d0948-4ca9-4b93-b44d-680ca0bf157b
Srinivasan, B.
ffe2fca6-8ac4-4cec-8769-93a696465073
Panbiharwala, Y., Yang, Pengling, Nilsson, J. and Srinivasan, B.
(2016)
Design and demonstration of an all-fiber tandem pumped master oscillator power amplifier.
International Conference on Fibre Optics and Photonics, , Kanpur, India.
04 - 08 Dec 2016.
(doi:10.1364/PHOTONICS.2016.Tu2E.3).
Record type:
Conference or Workshop Item
(Paper)
Abstract
We present simulations for an all-fiber tandem pumping configuration and demonstrate kW-level output through a careful management of the in-band pump power level. Experimental results are also presented for a booster amplifier at 1030 nm.
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Published date: 2016
Additional Information:
Tu2E.3
Venue - Dates:
International Conference on Fibre Optics and Photonics, , Kanpur, India, 2016-12-04 - 2016-12-08
Identifiers
Local EPrints ID: 442466
URI: http://eprints.soton.ac.uk/id/eprint/442466
PURE UUID: 84231e5a-a4e7-4530-9a37-d3c7cfbe8ebe
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Date deposited: 16 Jul 2020 16:30
Last modified: 17 Mar 2024 02:47
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Contributors
Author:
Y. Panbiharwala
Author:
Pengling Yang
Author:
J. Nilsson
Author:
B. Srinivasan
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