Design of highly nonlinear bismuth-oxide holey fibres with zero dispersion and enhanced Brillouin suppression
Design of highly nonlinear bismuth-oxide holey fibres with zero dispersion and enhanced Brillouin suppression
We demonstrate that Bi-based holey fibres can achieve the same nonlinear performance as their all solid counterparts, but with greatly improved dispersion control. Longitudinally tapering the structural parameters allows at least a further 13.5 times improvement in the Kerr-to-Brillouin figure-of-merit.
Poletti, F.
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Petropoulos, P.
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Broderick, N.G.
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Richardson, D.J.
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Poletti, F.
9adcef99-5558-4644-96d7-ce24b5897491
Petropoulos, P.
522b02cc-9f3f-468e-bca5-e9f58cc9cad7
Broderick, N.G.
b85a5bab-7c7a-4db8-aede-01ccef7b5b36
Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
Poletti, F., Petropoulos, P., Broderick, N.G. and Richardson, D.J.
(2006)
Design of highly nonlinear bismuth-oxide holey fibres with zero dispersion and enhanced Brillouin suppression.
ECOC 2006, Cannes.
24 - 28 Sep 2006.
Record type:
Conference or Workshop Item
(Paper)
Abstract
We demonstrate that Bi-based holey fibres can achieve the same nonlinear performance as their all solid counterparts, but with greatly improved dispersion control. Longitudinally tapering the structural parameters allows at least a further 13.5 times improvement in the Kerr-to-Brillouin figure-of-merit.
Text
3429
- Author's Original
More information
e-pub ahead of print date: 2006
Venue - Dates:
ECOC 2006, Cannes, 2006-09-24 - 2006-09-28
Identifiers
Local EPrints ID: 70932
URI: http://eprints.soton.ac.uk/id/eprint/70932
PURE UUID: 75d43281-ec96-43e1-85cf-e10613bdf432
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Date deposited: 11 Dec 2009
Last modified: 14 Mar 2024 02:52
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Contributors
Author:
F. Poletti
Author:
P. Petropoulos
Author:
N.G. Broderick
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