Optimum system management design using cascaded chirped grating dispersion compensator
Optimum system management design using cascaded chirped grating dispersion compensator
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.
Ennser, K.
11450092-3298-425a-982a-fda14ee8264b
Zervas, M.N.
1840a474-dd50-4a55-ab74-6f086aa3f701
Laming, R.I.
c86f359b-9145-4148-bc7d-ae4f3d272ca2
1996
Ennser, K.
11450092-3298-425a-982a-fda14ee8264b
Zervas, M.N.
1840a474-dd50-4a55-ab74-6f086aa3f701
Laming, R.I.
c86f359b-9145-4148-bc7d-ae4f3d272ca2
Ennser, K., Zervas, M.N. and Laming, R.I.
(1996)
Optimum system management design using cascaded chirped grating dispersion compensator.
Australian Conference on Optical Fibre Technology 1996 (ACOFT '96), Gold Coast, Australia.
01 - 04 Dec 1996.
Record type:
Conference or Workshop Item
(Paper)
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.
More information
Published date: 1996
Venue - Dates:
Australian Conference on Optical Fibre Technology 1996 (ACOFT '96), Gold Coast, Australia, 1996-12-01 - 1996-12-04
Identifiers
Local EPrints ID: 76863
URI: http://eprints.soton.ac.uk/id/eprint/76863
PURE UUID: 084675a4-0c53-4f91-b2ab-0f633a3bf776
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Date deposited: 11 Mar 2010
Last modified: 14 Mar 2024 02:35
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Contributors
Author:
K. Ennser
Author:
M.N. Zervas
Author:
R.I. Laming
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