The University of Southampton
University of Southampton Institutional Repository

Simultaneous 2R regeneration of WDM signals in a single optical fibre

Simultaneous 2R regeneration of WDM signals in a single optical fibre
Simultaneous 2R regeneration of WDM signals in a single optical fibre
Two experimental implementations of amplitude regeneration of WDM signals based on self-phase modulation (SPM) in optical fibres are discussed. The two examples differ in their approach of mitigation of inter-channel nonlinearities.
Petropoulos, P.
522b02cc-9f3f-468e-bca5-e9f58cc9cad7
Provost, L.
24c799f1-7cd4-4946-9803-30f77a387995
Parmigiani, F.
6a386833-5186-4448-875e-d691161aba62
Kouloumentas, Ch.
3819f8e3-c8ce-46eb-9fb2-8654b247aa4b
Finot, C.
fecca6bb-8ebf-4415-bd5a-2da911307f78
Mukasa, K.
bc9a646d-8256-4cbf-8385-ac1a9575daf9
Vorreau, P.
7f991c62-fd07-4d38-b44b-70a3f67437f2
Tomkos, I.
ef9f0c57-2825-4116-a593-2811b08226d0
Sygletos, S.
32948b2d-2407-4bcb-a417-6c07e64e46c2
Freude, W.
1b4217c2-54bb-4f83-b622-6f2df525d599
Leuthold, J.
adc8fb54-c05b-4434-af0e-bfd845e31ff6
Ellis, A.D.
a6630592-c671-42ef-8da2-974050df57bf
Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
Petropoulos, P.
522b02cc-9f3f-468e-bca5-e9f58cc9cad7
Provost, L.
24c799f1-7cd4-4946-9803-30f77a387995
Parmigiani, F.
6a386833-5186-4448-875e-d691161aba62
Kouloumentas, Ch.
3819f8e3-c8ce-46eb-9fb2-8654b247aa4b
Finot, C.
fecca6bb-8ebf-4415-bd5a-2da911307f78
Mukasa, K.
bc9a646d-8256-4cbf-8385-ac1a9575daf9
Vorreau, P.
7f991c62-fd07-4d38-b44b-70a3f67437f2
Tomkos, I.
ef9f0c57-2825-4116-a593-2811b08226d0
Sygletos, S.
32948b2d-2407-4bcb-a417-6c07e64e46c2
Freude, W.
1b4217c2-54bb-4f83-b622-6f2df525d599
Leuthold, J.
adc8fb54-c05b-4434-af0e-bfd845e31ff6
Ellis, A.D.
a6630592-c671-42ef-8da2-974050df57bf
Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3

Petropoulos, P., Provost, L., Parmigiani, F., Kouloumentas, Ch., Finot, C., Mukasa, K., Vorreau, P., Tomkos, I., Sygletos, S., Freude, W., Leuthold, J., Ellis, A.D. and Richardson, D.J. (2009) Simultaneous 2R regeneration of WDM signals in a single optical fibre. IEEE/LEOS Winter Topicals Meeting Series, , Innsbruck, Austria. 12 - 14 Jan 2009.

Record type: Conference or Workshop Item (Paper)

Abstract

Two experimental implementations of amplitude regeneration of WDM signals based on self-phase modulation (SPM) in optical fibres are discussed. The two examples differ in their approach of mitigation of inter-channel nonlinearities.

This record has no associated files available for download.

More information

Published date: 12 January 2009
Venue - Dates: IEEE/LEOS Winter Topicals Meeting Series, , Innsbruck, Austria, 2009-01-12 - 2009-01-14

Identifiers

Local EPrints ID: 76239
URI: http://eprints.soton.ac.uk/id/eprint/76239
PURE UUID: ac9f079e-1de4-4b4f-85aa-e2722cb460f8
ORCID for P. Petropoulos: ORCID iD orcid.org/0000-0002-1576-8034
ORCID for F. Parmigiani: ORCID iD orcid.org/0000-0001-7784-2829
ORCID for D.J. Richardson: ORCID iD orcid.org/0000-0002-7751-1058

Catalogue record

Date deposited: 19 Mar 2010
Last modified: 09 Feb 2023 02:38

Export record

Contributors

Author: P. Petropoulos ORCID iD
Author: L. Provost
Author: F. Parmigiani ORCID iD
Author: Ch. Kouloumentas
Author: C. Finot
Author: K. Mukasa
Author: P. Vorreau
Author: I. Tomkos
Author: S. Sygletos
Author: W. Freude
Author: J. Leuthold
Author: A.D. Ellis
Author: D.J. Richardson ORCID iD

Download statistics

Downloads from ePrints over the past year. Other digital versions may also be available to download e.g. from the publisher's website.

View more statistics

Atom RSS 1.0 RSS 2.0

Contact ePrints Soton: eprints@soton.ac.uk

ePrints Soton supports OAI 2.0 with a base URL of http://eprints.soton.ac.uk/cgi/oai2

This repository has been built using EPrints software, developed at the University of Southampton, but available to everyone to use.

We use cookies to ensure that we give you the best experience on our website. If you continue without changing your settings, we will assume that you are happy to receive cookies on the University of Southampton website.

×