Modeling large air fraction holey optical fibers
Modeling large air fraction holey optical fibers
We develop a modal decomposition approach to solve the full vector wave equation for holey optical fibers (HF). This model can be used to explore the modal properties of a wide range of HFs, including those with large air holes. The optical properties of HF can be tailored via the arrangement of the air holes, and this flexibility leads to a wide range of practical applications.
50-56
Monro, T.M.
4f0295a8-d9ec-45a5-b72b-72908f2549bb
Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
Broderick, N.G.R.
4cfa2c7c-097a-48d6-b221-4e92ad1c6aea
Bennett, P.J.
e7be07a4-bbed-499c-b759-29391778474e
2000
Monro, T.M.
4f0295a8-d9ec-45a5-b72b-72908f2549bb
Richardson, D.J.
ebfe1ff9-d0c2-4e52-b7ae-c1b13bccdef3
Broderick, N.G.R.
4cfa2c7c-097a-48d6-b221-4e92ad1c6aea
Bennett, P.J.
e7be07a4-bbed-499c-b759-29391778474e
Monro, T.M., Richardson, D.J., Broderick, N.G.R. and Bennett, P.J.
(2000)
Modeling large air fraction holey optical fibers.
IEEE Journal of Lightwave Technology, 18 (1), .
(doi:10.1109/50.818906).
Abstract
We develop a modal decomposition approach to solve the full vector wave equation for holey optical fibers (HF). This model can be used to explore the modal properties of a wide range of HFs, including those with large air holes. The optical properties of HF can be tailored via the arrangement of the air holes, and this flexibility leads to a wide range of practical applications.
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Published date: 2000
Organisations:
Optoelectronics Research Centre
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Local EPrints ID: 13660
URI: http://eprints.soton.ac.uk/id/eprint/13660
ISSN: 0733-8724
PURE UUID: 8d6484ec-41cc-48df-846b-3f9bb89f049b
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Date deposited: 06 Jan 2005
Last modified: 16 Mar 2024 02:39
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Author:
T.M. Monro
Author:
N.G.R. Broderick
Author:
P.J. Bennett
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