Graphene oxide coated side polished surface plasmon resonance optical fibre sensor with varying polishing losses

Four batches of side-polished SMF optical fibres with different polishing losses, − 0.5 dBm, − 5 dBm, − 10 dBm and − 15 dBm were coated with a graphene oxide layer of ~ 0.5 μm via drop casting. TE polarized light was propagated through the light during experiments and four different transformer oils...

Full description

Saved in:
Bibliographic Details
Main Authors: Shanmuga Vadivu, N., Zakaria, Rozalina, Mezher, Mezher H., Maheswar, R., Lim, C.S., Lai, D., Amiri, Iraj Sadegh
Format: Article
Published: Springer 2019
Subjects:
Online Access:http://eprints.um.edu.my/23474/
https://doi.org/10.1007/s11082-019-2086-3
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Universiti Malaya
id my.um.eprints.23474
record_format eprints
spelling my.um.eprints.234742020-01-20T02:08:43Z http://eprints.um.edu.my/23474/ Graphene oxide coated side polished surface plasmon resonance optical fibre sensor with varying polishing losses Shanmuga Vadivu, N. Zakaria, Rozalina Mezher, Mezher H. Maheswar, R. Lim, C.S. Lai, D. Amiri, Iraj Sadegh QC Physics TK Electrical engineering. Electronics Nuclear engineering Four batches of side-polished SMF optical fibres with different polishing losses, − 0.5 dBm, − 5 dBm, − 10 dBm and − 15 dBm were coated with a graphene oxide layer of ~ 0.5 μm via drop casting. TE polarized light was propagated through the light during experiments and four different transformer oils with different water contents were dropped onto the sensor. The drop in the power of transmitted light was recorded. The responses of the sensors showed good linearity for all, but the least polished fibre showed the weakest response in terms of power drop towards change in concentration. The − 5 dBm fibre showed the best response per unit concentration change. Additional tests showed the increased response for a GO coated side polished sensor compared to an uncoated side polished sensor. Simulation using COMSOL was performed to show the effects on the electric field of a sensor with and without GO coating. Another set of simulations were performed to show the effects of reducing cladding thickness on the coupling of the electric field. Simulations show that the optimal cladding thickness is not the most polished fibre, coinciding with our results that − 15 dBm loss fibre did not show the most response per unit change in the analyte. © 2019, Springer Science+Business Media, LLC, part of Springer Nature. Springer 2019 Article PeerReviewed Shanmuga Vadivu, N. and Zakaria, Rozalina and Mezher, Mezher H. and Maheswar, R. and Lim, C.S. and Lai, D. and Amiri, Iraj Sadegh (2019) Graphene oxide coated side polished surface plasmon resonance optical fibre sensor with varying polishing losses. Optical and Quantum Electronics, 51 (11). p. 366. ISSN 0306-8919 https://doi.org/10.1007/s11082-019-2086-3 doi:10.1007/s11082-019-2086-3
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QC Physics
TK Electrical engineering. Electronics Nuclear engineering
spellingShingle QC Physics
TK Electrical engineering. Electronics Nuclear engineering
Shanmuga Vadivu, N.
Zakaria, Rozalina
Mezher, Mezher H.
Maheswar, R.
Lim, C.S.
Lai, D.
Amiri, Iraj Sadegh
Graphene oxide coated side polished surface plasmon resonance optical fibre sensor with varying polishing losses
description Four batches of side-polished SMF optical fibres with different polishing losses, − 0.5 dBm, − 5 dBm, − 10 dBm and − 15 dBm were coated with a graphene oxide layer of ~ 0.5 μm via drop casting. TE polarized light was propagated through the light during experiments and four different transformer oils with different water contents were dropped onto the sensor. The drop in the power of transmitted light was recorded. The responses of the sensors showed good linearity for all, but the least polished fibre showed the weakest response in terms of power drop towards change in concentration. The − 5 dBm fibre showed the best response per unit concentration change. Additional tests showed the increased response for a GO coated side polished sensor compared to an uncoated side polished sensor. Simulation using COMSOL was performed to show the effects on the electric field of a sensor with and without GO coating. Another set of simulations were performed to show the effects of reducing cladding thickness on the coupling of the electric field. Simulations show that the optimal cladding thickness is not the most polished fibre, coinciding with our results that − 15 dBm loss fibre did not show the most response per unit change in the analyte. © 2019, Springer Science+Business Media, LLC, part of Springer Nature.
format Article
author Shanmuga Vadivu, N.
Zakaria, Rozalina
Mezher, Mezher H.
Maheswar, R.
Lim, C.S.
Lai, D.
Amiri, Iraj Sadegh
author_facet Shanmuga Vadivu, N.
Zakaria, Rozalina
Mezher, Mezher H.
Maheswar, R.
Lim, C.S.
Lai, D.
Amiri, Iraj Sadegh
author_sort Shanmuga Vadivu, N.
title Graphene oxide coated side polished surface plasmon resonance optical fibre sensor with varying polishing losses
title_short Graphene oxide coated side polished surface plasmon resonance optical fibre sensor with varying polishing losses
title_full Graphene oxide coated side polished surface plasmon resonance optical fibre sensor with varying polishing losses
title_fullStr Graphene oxide coated side polished surface plasmon resonance optical fibre sensor with varying polishing losses
title_full_unstemmed Graphene oxide coated side polished surface plasmon resonance optical fibre sensor with varying polishing losses
title_sort graphene oxide coated side polished surface plasmon resonance optical fibre sensor with varying polishing losses
publisher Springer
publishDate 2019
url http://eprints.um.edu.my/23474/
https://doi.org/10.1007/s11082-019-2086-3
_version_ 1657488214781329408