Optical magnetic field sensing based on metamaterial nanomechanics
Optical magnetic field sensing based on metamaterial nanomechanics
We demonstrate an optical magnetic field sensor based on a metamaterial-microcavity. Actuation of the microcavity by the magnetic Lorentz force controls its reflectivity. Such sensors promise microscale spatial, sub-millisecond temporal and microtesla magnetic field resolution.
metamaterial, magnetic field sensor, optical sensor, Lorentz force, Fabry-Perot
Lan, Guoqiang
35b81098-e390-4d28-b202-59c389d2b293
Ou, Jun-Yu
3fb703e3-b222-46d2-b4ee-75f296d9d64d
Plum, Eric
50761a26-2982-40df-9153-7aecc4226eb5
21 June 2021
Lan, Guoqiang
35b81098-e390-4d28-b202-59c389d2b293
Ou, Jun-Yu
3fb703e3-b222-46d2-b4ee-75f296d9d64d
Plum, Eric
50761a26-2982-40df-9153-7aecc4226eb5
Lan, Guoqiang, Ou, Jun-Yu and Plum, Eric
(2021)
Optical magnetic field sensing based on metamaterial nanomechanics.
CLEO/Europe-EQEC 2021 Virtual Conference, , Virtual.
21 - 25 Jun 2021.
Record type:
Conference or Workshop Item
(Paper)
Abstract
We demonstrate an optical magnetic field sensor based on a metamaterial-microcavity. Actuation of the microcavity by the magnetic Lorentz force controls its reflectivity. Such sensors promise microscale spatial, sub-millisecond temporal and microtesla magnetic field resolution.
Text
Optical magnetic field sensing based on metamaterial nanomechanics
- Accepted Manuscript
More information
Published date: 21 June 2021
Venue - Dates:
CLEO/Europe-EQEC 2021 Virtual Conference, , Virtual, 2021-06-21 - 2021-06-25
Keywords:
metamaterial, magnetic field sensor, optical sensor, Lorentz force, Fabry-Perot
Identifiers
Local EPrints ID: 448180
URI: http://eprints.soton.ac.uk/id/eprint/448180
PURE UUID: 001c64ce-b0f3-46eb-832c-cca5d870c836
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Date deposited: 14 Apr 2021 16:31
Last modified: 17 Mar 2024 06:28
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Contributors
Author:
Guoqiang Lan
Author:
Jun-Yu Ou
Author:
Eric Plum
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