Optical switching in metal electrodes embedded dual-core optical fibre
Optical switching in metal electrodes embedded dual-core optical fibre
Micro-structured optical fibres (MOF) have been designed in a large variety of geometries. Much of these efforts were focused on control of dispersion, enhancement of the nonlinearity, reduction of the fibre transmission loss, or sensitivity to the environment for sensing in single-material MOFs. Multi-material MOFs have also been developed for added functionality, e.g, hollow-core fibres filled with liquid for temperature sensing or with integrated electrodes for switching applications.
Segura Sarmiento, M.
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Lian, Z.
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Podoliak, N.
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Feng, X.
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White, N.
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Loh, W.H.
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Horak, P.
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September 2014
Segura Sarmiento, M.
552974bf-ff2e-43d0-bab1-3bffb3c827bc
Lian, Z.
0363581e-87ad-48e7-b9d6-277f620305ba
Podoliak, N.
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Feng, X.
9953a7b7-94ca-4a06-96c9-7c09a2c92198
White, N.
94c619a3-093f-4bbe-b313-b548a2435249
Loh, W.H.
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Horak, P.
520489b5-ccc7-4d29-bb30-c1e36436ea03
Segura Sarmiento, M., Lian, Z., Podoliak, N., Feng, X., White, N., Loh, W.H. and Horak, P.
(2014)
Optical switching in metal electrodes embedded dual-core optical fibre.
3rd Annual EPSRC Manufacturing the Future Conference, Glasgow, United Kingdom.
23 - 24 Sep 2014.
1 pp
.
Record type:
Conference or Workshop Item
(Paper)
Abstract
Micro-structured optical fibres (MOF) have been designed in a large variety of geometries. Much of these efforts were focused on control of dispersion, enhancement of the nonlinearity, reduction of the fibre transmission loss, or sensitivity to the environment for sensing in single-material MOFs. Multi-material MOFs have also been developed for added functionality, e.g, hollow-core fibres filled with liquid for temperature sensing or with integrated electrodes for switching applications.
More information
Published date: September 2014
Venue - Dates:
3rd Annual EPSRC Manufacturing the Future Conference, Glasgow, United Kingdom, 2014-09-23 - 2014-09-24
Organisations:
Optoelectronics Research Centre, Quantum, Light & Matter Group
Identifiers
Local EPrints ID: 379318
URI: http://eprints.soton.ac.uk/id/eprint/379318
PURE UUID: 3efbe88d-3e27-4fcf-99e2-1087653b4dd7
Catalogue record
Date deposited: 21 Jul 2015 13:29
Last modified: 15 Mar 2024 03:36
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Contributors
Author:
M. Segura Sarmiento
Author:
Z. Lian
Author:
N. Podoliak
Author:
X. Feng
Author:
N. White
Author:
W.H. Loh
Author:
P. Horak
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