Enhanced all-optical modulation in MoS2-coated side-polished fibres
Enhanced all-optical modulation in MoS2-coated side-polished fibres
A side-polished optical fibre platform is used to access the nonlinear optical properties of MoS2. Experiments show its nonlinear response which is enhanced via resonant coupling, allowing for the observation of significant optical modulation.
Zhang, Haojie
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Zhang, Zhiguo
355cd272-89ec-4566-9b11-a75fffa16ed0
Healy, Noel
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Peacock, Anna
685d924c-ef6b-401b-a0bd-acf1f8e758fc
Zhang, Haojie
9c978833-adbb-4880-b4a2-40854ba96285
Zhang, Zhiguo
355cd272-89ec-4566-9b11-a75fffa16ed0
Healy, Noel
e2c3c696-01fc-4a3d-b272-2a90358e6055
Peacock, Anna
685d924c-ef6b-401b-a0bd-acf1f8e758fc
Zhang, Haojie, Zhang, Zhiguo, Healy, Noel and Peacock, Anna
(2021)
Enhanced all-optical modulation in MoS2-coated side-polished fibres.
Optoelectronics and Communications Conference 2021, Virtual.
03 - 07 Jul 2021.
(In Press)
Record type:
Conference or Workshop Item
(Paper)
Abstract
A side-polished optical fibre platform is used to access the nonlinear optical properties of MoS2. Experiments show its nonlinear response which is enhanced via resonant coupling, allowing for the observation of significant optical modulation.
Text
OECC_MoS2_haojie
- Author's Original
More information
Accepted/In Press date: 10 May 2021
Venue - Dates:
Optoelectronics and Communications Conference 2021, Virtual, 2021-07-03 - 2021-07-07
Identifiers
Local EPrints ID: 449738
URI: http://eprints.soton.ac.uk/id/eprint/449738
PURE UUID: e11b5497-a9f9-4a9d-9973-12a40c808818
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Date deposited: 15 Jun 2021 16:31
Last modified: 11 May 2024 01:39
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Contributors
Author:
Haojie Zhang
Author:
Zhiguo Zhang
Author:
Noel Healy
Author:
Anna Peacock
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