Towards practical holey fibre technology: fabrication splicing modeling and characterization
Towards practical holey fibre technology: fabrication splicing modeling and characterization
We report the fabrication of long lengths of mechanically robust holey fiber and what is believed to be the first demonstration of their splicing. These practical advances have permitted what is to our knowledge the first detailed characterization of a holey fiber near 1.5µm. We compare dispersion measurements with our numerical predictions and confirm that our model can be used to predict accurately holey fiber properties.
1203-1205
Bennett, P.J.
e7be07a4-bbed-499c-b759-29391778474e
Monro, T.M.
4f0295a8-d9ec-45a5-b72b-72908f2549bb
Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
1999
Bennett, P.J.
e7be07a4-bbed-499c-b759-29391778474e
Monro, T.M.
4f0295a8-d9ec-45a5-b72b-72908f2549bb
Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
Bennett, P.J., Monro, T.M. and Richardson, D.J.
(1999)
Towards practical holey fibre technology: fabrication splicing modeling and characterization.
Optics Letters, 24 (17), .
(doi:10.1364/OL.24.001203).
Abstract
We report the fabrication of long lengths of mechanically robust holey fiber and what is believed to be the first demonstration of their splicing. These practical advances have permitted what is to our knowledge the first detailed characterization of a holey fiber near 1.5µm. We compare dispersion measurements with our numerical predictions and confirm that our model can be used to predict accurately holey fiber properties.
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Published date: 1999
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Local EPrints ID: 77799
URI: http://eprints.soton.ac.uk/id/eprint/77799
ISSN: 0146-9592
PURE UUID: 8eca5fd2-048a-478b-b584-3b367c991f89
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Date deposited: 11 Mar 2010
Last modified: 14 Mar 2024 02:34
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Author:
P.J. Bennett
Author:
T.M. Monro
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