Electrically controlled liquid-crystal cell enhanced with plasmonic metamaterial
Electrically controlled liquid-crystal cell enhanced with plasmonic metamaterial
We demonstrate high-contrast electro-optical modulator based on a hybrid liquid-crystal cell incorporating a nano-structured plasmonic metamaterial. With the control signal of only 7V we achieved fivefold, hysteresis-free transmission modulation at the wavelength of 1.55µm.
Buchnev, O.
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Ou, J.Y.
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Kaczmarek, M.
408ec59b-8dba-41c1-89d0-af846d1bf327
Zheludev, N.I.
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Fedotov, V.A.
3725f5cc-2d0b-4e61-95c5-26d187c84f25
Buchnev, O.
60cdb0d2-3388-47be-a066-61b3b396f69d
Ou, J.Y.
3fb703e3-b222-46d2-b4ee-75f296d9d64d
Kaczmarek, M.
408ec59b-8dba-41c1-89d0-af846d1bf327
Zheludev, N.I.
32fb6af7-97e4-4d11-bca6-805745e40cc6
Fedotov, V.A.
3725f5cc-2d0b-4e61-95c5-26d187c84f25
Buchnev, O., Ou, J.Y., Kaczmarek, M., Zheludev, N.I. and Fedotov, V.A.
(2013)
Electrically controlled liquid-crystal cell enhanced with plasmonic metamaterial.
Nanometa 2013, , Seefeld, Austria.
03 - 06 Jan 2013.
1 pp
.
Record type:
Conference or Workshop Item
(Paper)
Abstract
We demonstrate high-contrast electro-optical modulator based on a hybrid liquid-crystal cell incorporating a nano-structured plasmonic metamaterial. With the control signal of only 7V we achieved fivefold, hysteresis-free transmission modulation at the wavelength of 1.55µm.
More information
e-pub ahead of print date: January 2013
Venue - Dates:
Nanometa 2013, , Seefeld, Austria, 2013-01-03 - 2013-01-06
Organisations:
Optoelectronics Research Centre
Identifiers
Local EPrints ID: 375992
URI: http://eprints.soton.ac.uk/id/eprint/375992
PURE UUID: 0fa7a243-36c5-4f96-a8cd-74f4f43469be
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Date deposited: 22 Apr 2015 11:06
Last modified: 15 Mar 2024 03:39
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Contributors
Author:
O. Buchnev
Author:
J.Y. Ou
Author:
N.I. Zheludev
Author:
V.A. Fedotov
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