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Applications of highly nonlinear dispersion tailored lead silicate fibres for high speed optical communications

Applications of highly nonlinear dispersion tailored lead silicate fibres for high speed optical communications
Applications of highly nonlinear dispersion tailored lead silicate fibres for high speed optical communications
Recent advances in optical fibre technology, most notably in the area of microstructured optical fibres (MOFs), offer a host of new opportunities within future high speed communication systems. Herein we review how our recent progress on the implementation of lead silicate fibre designs, allowing both flexible dispersion control and a high effective nonlinearity, can be integrated into various all-optical signal processing devices for high speed optical communication systems. Highly nonlinear lead silicate fibres have already proven to be well suited for achieving efficient four-wave mixing (FWM) due to their high effective nonlinear coefficient, low dispersion profile and short length.
Parmigiani, F.
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Camerlingo, A.
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Feng, X.
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Poletti, F.
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Ponzo, G.M.
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Slavík, R.
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Horak, P.
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Petrovich, M.N.
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Loh, W.H.
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Petropoulos, P.
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Richardson, D.J.
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Parmigiani, F.
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Camerlingo, A.
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Feng, X.
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Poletti, F.
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Ponzo, G.M.
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Slavík, R.
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Horak, P.
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Petrovich, M.N.
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Loh, W.H.
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Petropoulos, P.
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Richardson, D.J.
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Parmigiani, F., Camerlingo, A., Feng, X., Poletti, F., Ponzo, G.M., Slavík, R., Horak, P., Petrovich, M.N., Loh, W.H., Petropoulos, P. and Richardson, D.J. (2010) Applications of highly nonlinear dispersion tailored lead silicate fibres for high speed optical communications. ICTON 2010: 12th International Conference on Transparent Optical Networks, , Munich, Germany. 27 Jun - 01 Jul 2010. 4 pp .

Record type: Conference or Workshop Item (Other)

Abstract

Recent advances in optical fibre technology, most notably in the area of microstructured optical fibres (MOFs), offer a host of new opportunities within future high speed communication systems. Herein we review how our recent progress on the implementation of lead silicate fibre designs, allowing both flexible dispersion control and a high effective nonlinearity, can be integrated into various all-optical signal processing devices for high speed optical communication systems. Highly nonlinear lead silicate fibres have already proven to be well suited for achieving efficient four-wave mixing (FWM) due to their high effective nonlinear coefficient, low dispersion profile and short length.

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e-pub ahead of print date: June 2010
Additional Information: Tu.D2.3
Venue - Dates: ICTON 2010: 12th International Conference on Transparent Optical Networks, , Munich, Germany, 2010-06-27 - 2010-07-01
Organisations: Optoelectronics Research Centre

Identifiers

Local EPrints ID: 340566
URI: http://eprints.soton.ac.uk/id/eprint/340566
PURE UUID: 76583396-48d1-48f2-be51-9e3c6e228e22
ORCID for F. Parmigiani: ORCID iD orcid.org/0000-0001-7784-2829
ORCID for F. Poletti: ORCID iD orcid.org/0000-0002-1000-3083
ORCID for R. Slavík: ORCID iD orcid.org/0000-0002-9336-4262
ORCID for P. Horak: ORCID iD orcid.org/0000-0002-8710-8764
ORCID for M.N. Petrovich: ORCID iD orcid.org/0000-0002-3905-5901
ORCID for P. Petropoulos: ORCID iD orcid.org/0000-0002-1576-8034
ORCID for D.J. Richardson: ORCID iD orcid.org/0000-0002-7751-1058

Catalogue record

Date deposited: 26 Jun 2012 10:50
Last modified: 15 Mar 2024 03:32

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Contributors

Author: F. Parmigiani ORCID iD
Author: A. Camerlingo
Author: X. Feng
Author: F. Poletti ORCID iD
Author: G.M. Ponzo
Author: R. Slavík ORCID iD
Author: P. Horak ORCID iD
Author: M.N. Petrovich ORCID iD
Author: W.H. Loh
Author: P. Petropoulos ORCID iD
Author: D.J. Richardson ORCID iD

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