Combining fluid dynamics and electromagnetics modelling to improve hollow core photonic band gap fibres
Combining fluid dynamics and electromagnetics modelling to improve hollow core photonic band gap fibres
We combine two powerful simulation tools to predict geometry and optical properties of Hollow Core Photonic Band Gap fibres from their preform and draw parameters. Broad parametric sweeps allow identifying structures with optimum optical performance.
Jasion, G.T.
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Numkam Fokoua, E.R.
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Shrimpton, J.S.
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Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
Poletti, F.
9adcef99-5558-4644-96d7-ce24b5897491
2015
Jasion, G.T.
16cfff1d-d178-41d1-a092-56e6239726b8
Numkam Fokoua, E.R.
6d9f7e50-dc3b-440a-a0b9-f4a08dd02ccd
Shrimpton, J.S.
9cf82d2e-2f00-4ddf-bd19-9aff443784af
Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
Poletti, F.
9adcef99-5558-4644-96d7-ce24b5897491
Jasion, G.T., Numkam Fokoua, E.R., Shrimpton, J.S., Richardson, D.J. and Poletti, F.
(2015)
Combining fluid dynamics and electromagnetics modelling to improve hollow core photonic band gap fibres.
Workshop on Specialty Optical Fibers, Hong Kong, Hong Kong.
04 - 06 Nov 2015.
(doi:10.1364/WSOF.2015.WF2A.3).
Record type:
Conference or Workshop Item
(Paper)
Abstract
We combine two powerful simulation tools to predict geometry and optical properties of Hollow Core Photonic Band Gap fibres from their preform and draw parameters. Broad parametric sweeps allow identifying structures with optimum optical performance.
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More information
Published date: 2015
Additional Information:
WF2A.3
Venue - Dates:
Workshop on Specialty Optical Fibers, Hong Kong, Hong Kong, 2015-11-04 - 2015-11-06
Identifiers
Local EPrints ID: 441121
URI: http://eprints.soton.ac.uk/id/eprint/441121
PURE UUID: b0396d1f-b7bf-412e-8e72-d6d62146103e
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Date deposited: 02 Jun 2020 16:30
Last modified: 17 Mar 2024 03:32
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Contributors
Author:
G.T. Jasion
Author:
E.R. Numkam Fokoua
Author:
F. Poletti
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