Optomechanical guitar: reconfiguring metamaterials with sub-wavelength spatial resolution
Optomechanical guitar: reconfiguring metamaterials with sub-wavelength spatial resolution
Optomechanical metamaterials, where optical signals actuate unique elements of the nanostructure at their eigenfrequency, can be used to modulate metamaterials with sub-wavelength spatial resolution. We demonstrate the first all-optically addressable metadevice operating in the near infrared.
Ou, Jun-Yu
3fb703e3-b222-46d2-b4ee-75f296d9d64d
Plum, Eric
50761a26-2982-40df-9153-7aecc4226eb5
Zheludev, Nikolai
32fb6af7-97e4-4d11-bca6-805745e40cc6
Ou, Jun-Yu
3fb703e3-b222-46d2-b4ee-75f296d9d64d
Plum, Eric
50761a26-2982-40df-9153-7aecc4226eb5
Zheludev, Nikolai
32fb6af7-97e4-4d11-bca6-805745e40cc6
Ou, Jun-Yu, Plum, Eric and Zheludev, Nikolai
(2016)
Optomechanical guitar: reconfiguring metamaterials with sub-wavelength spatial resolution.
Metamaterials 2016, Crete, Greece.
17 - 22 Sep 2016.
Record type:
Conference or Workshop Item
(Other)
Abstract
Optomechanical metamaterials, where optical signals actuate unique elements of the nanostructure at their eigenfrequency, can be used to modulate metamaterials with sub-wavelength spatial resolution. We demonstrate the first all-optically addressable metadevice operating in the near infrared.
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e-pub ahead of print date: 20 September 2016
Venue - Dates:
Metamaterials 2016, Crete, Greece, 2016-09-17 - 2016-09-22
Organisations:
Optoelectronics Research Centre
Identifiers
Local EPrints ID: 396794
URI: http://eprints.soton.ac.uk/id/eprint/396794
PURE UUID: 4b3da9b0-2d43-493e-9d11-c0e157469b24
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Date deposited: 15 Jun 2016 09:08
Last modified: 15 Mar 2024 03:39
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Contributors
Author:
Jun-Yu Ou
Author:
Eric Plum
Author:
Nikolai Zheludev
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