A fibre optic force sensing method based on the S2 imaging technique
A fibre optic force sensing method based on the S2 imaging technique
We report an implementation of a large mode area optical fibre combined with a self-interferometric spatial and spectral (S2) imaging technique for force sensing. The advantages of the method include the simplicity of the design.
Vukovic, Natasha
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Zervas, Michael N.
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Codemard, Christophe
3aa50483-b61c-4e7e-b178-c9a88bb47bef
Srikanthan, Athithyan
c43d0381-eb95-4450-8b4f-3d167a0f96c3
Vukovic, Natasha
3de33ba9-eb8f-4a06-a65e-4ac0a602a157
Zervas, Michael N.
1840a474-dd50-4a55-ab74-6f086aa3f701
Codemard, Christophe
3aa50483-b61c-4e7e-b178-c9a88bb47bef
Srikanthan, Athithyan
c43d0381-eb95-4450-8b4f-3d167a0f96c3
Vukovic, Natasha, Zervas, Michael N., Codemard, Christophe and Srikanthan, Athithyan
(2023)
A fibre optic force sensing method based on the S2 imaging technique.
Symposium CLEO/Europe-EQEC 2023, ICM Centre of the Munich Trade Fair Centre, Munich, Germany.
26 - 30 Jun 2023.
1 pp
.
(In Press)
Record type:
Conference or Workshop Item
(Paper)
Abstract
We report an implementation of a large mode area optical fibre combined with a self-interferometric spatial and spectral (S2) imaging technique for force sensing. The advantages of the method include the simplicity of the design.
Text
CLEO_Europe-2023-abstract-submission-Natasha_Vukovic
- Author's Original
More information
Accepted/In Press date: 28 June 2023
Venue - Dates:
Symposium CLEO/Europe-EQEC 2023, ICM Centre of the Munich Trade Fair Centre, Munich, Germany, 2023-06-26 - 2023-06-30
Identifiers
Local EPrints ID: 480267
URI: http://eprints.soton.ac.uk/id/eprint/480267
PURE UUID: 07ce0906-8dec-4750-b601-259a55b43fe2
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Date deposited: 01 Aug 2023 17:14
Last modified: 18 Mar 2024 02:38
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Contributors
Author:
Natasha Vukovic
Author:
Michael N. Zervas
Author:
Christophe Codemard
Author:
Athithyan Srikanthan
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