Active plasmonics: current status
Active plasmonics: current status
Techniques for active modulation and control of plasmonic signals in future highly-integrated nanophotonic devices have advanced rapidly in recent years, with recent innovations extending performance limits into the technologically relevant terahertz frequency and femtojoule-per-bit switching energy domains.
Surface plasmons, active plasmonics, modulation, switching.
MacDonald, K.F.
76c84116-aad1-4973-b917-7ca63935dba5
Sámson, Z.L.
edc8b2de-2acf-405d-8ffa-ed7344d9ee7a
Zheludev, N.I.
32fb6af7-97e4-4d11-bca6-805745e40cc6
October 2009
MacDonald, K.F.
76c84116-aad1-4973-b917-7ca63935dba5
Sámson, Z.L.
edc8b2de-2acf-405d-8ffa-ed7344d9ee7a
Zheludev, N.I.
32fb6af7-97e4-4d11-bca6-805745e40cc6
MacDonald, K.F., Sámson, Z.L. and Zheludev, N.I.
(2009)
Active plasmonics: current status.
22nd Annual Meeting of the IEEE Photonics Society, , Belek-Antalya, Turkey.
04 - 08 Oct 2009.
1 pp
.
(doi:10.1109/LEOS.2009.5343460).
Record type:
Conference or Workshop Item
(Paper)
Abstract
Techniques for active modulation and control of plasmonic signals in future highly-integrated nanophotonic devices have advanced rapidly in recent years, with recent innovations extending performance limits into the technologically relevant terahertz frequency and femtojoule-per-bit switching energy domains.
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Published date: October 2009
Venue - Dates:
22nd Annual Meeting of the IEEE Photonics Society, , Belek-Antalya, Turkey, 2009-10-04 - 2009-10-08
Keywords:
Surface plasmons, active plasmonics, modulation, switching.
Identifiers
Local EPrints ID: 78949
URI: http://eprints.soton.ac.uk/id/eprint/78949
PURE UUID: c979b9bc-eee2-4ff7-aa6d-8799774d7e1a
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Date deposited: 17 Mar 2010
Last modified: 14 Mar 2024 02:43
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Contributors
Author:
K.F. MacDonald
Author:
Z.L. Sámson
Author:
N.I. Zheludev
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