Optimization of linearly chirped grating dispersion compensated systems
Optimization of linearly chirped grating dispersion compensated systems
The optimum design for a 10Gb/s NRZ chirped fibre grating dispersion compensated system operating at 1.55µm over standard fibre is investigated. The study considers self-phase modulation, dispersion, modulator chirp and amplifier noise. Transmission over 1700km of fibre may be achieved by incorporating gratings every 200km and optimising the modulator chirp.
120-122
Ennser, Karin
a57051e4-d85d-40de-ade9-6d73db7bc1ad
Zervas, Michael N.
1840a474-dd50-4a55-ab74-6f086aa3f701
Laming, Richard I.
7a3db66b-2c54-43e3-bdd8-ab45c9195cd4
April 1997
Ennser, Karin
a57051e4-d85d-40de-ade9-6d73db7bc1ad
Zervas, Michael N.
1840a474-dd50-4a55-ab74-6f086aa3f701
Laming, Richard I.
7a3db66b-2c54-43e3-bdd8-ab45c9195cd4
Ennser, Karin, Zervas, Michael N. and Laming, Richard I.
(1997)
Optimization of linearly chirped grating dispersion compensated systems.
Optical Fiber Technology, 3 (2), .
(doi:10.1006/ofte.1997.0206).
Abstract
The optimum design for a 10Gb/s NRZ chirped fibre grating dispersion compensated system operating at 1.55µm over standard fibre is investigated. The study considers self-phase modulation, dispersion, modulator chirp and amplifier noise. Transmission over 1700km of fibre may be achieved by incorporating gratings every 200km and optimising the modulator chirp.
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Published date: April 1997
Identifiers
Local EPrints ID: 78030
URI: http://eprints.soton.ac.uk/id/eprint/78030
ISSN: 1068-5200
PURE UUID: ae604d78-a21e-45d0-9cd5-9c2d96ac92eb
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Date deposited: 11 Mar 2010
Last modified: 14 Mar 2024 02:35
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Author:
Karin Ennser
Author:
Michael N. Zervas
Author:
Richard I. Laming
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