Optical switching with phase-change metamaterials
Optical switching with phase-change metamaterials
The next phase of the photonic technological revolution will be driven by switchable and nonlinear metamaterials, with properties surpassing those of natural media, as a functional platform for nanoscale 'meta-devices'. We report here on recent advances in the development of versatile, planar photonic metamaterial solutions to provide a new generation of all-optical switching and memory devices.
MacDonald, K.F.
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Zhang, J.
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Gholipour, B.
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Maddock, J.
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Hewak, D.W.
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Zheludev, N.I.
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MacDonald, K.F.
76c84116-aad1-4973-b917-7ca63935dba5
Zhang, J.
722d2564-f8ae-40f1-b1e1-07896b67a0d8
Gholipour, B.
c17bd62d-9df6-40e6-bc42-65272d97e559
Maddock, J.
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Hewak, D.W.
87c80070-c101-4f7a-914f-4cc3131e3db0
Zheludev, N.I.
32fb6af7-97e4-4d11-bca6-805745e40cc6
MacDonald, K.F., Zhang, J., Gholipour, B., Maddock, J., Hewak, D.W. and Zheludev, N.I.
(2013)
Optical switching with phase-change metamaterials.
SPIE Optics & Photonics 2013, San Diego, United States.
24 - 28 Aug 2013.
Record type:
Conference or Workshop Item
(Other)
Abstract
The next phase of the photonic technological revolution will be driven by switchable and nonlinear metamaterials, with properties surpassing those of natural media, as a functional platform for nanoscale 'meta-devices'. We report here on recent advances in the development of versatile, planar photonic metamaterial solutions to provide a new generation of all-optical switching and memory devices.
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e-pub ahead of print date: August 2013
Venue - Dates:
SPIE Optics & Photonics 2013, San Diego, United States, 2013-08-24 - 2013-08-28
Organisations:
Optoelectronics Research Centre
Identifiers
Local EPrints ID: 368807
URI: http://eprints.soton.ac.uk/id/eprint/368807
PURE UUID: 1da41965-bc5f-4aaf-ade6-e9940bb1590f
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Date deposited: 18 Sep 2014 11:18
Last modified: 12 Dec 2021 03:09
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Contributors
Author:
K.F. MacDonald
Author:
J. Zhang
Author:
B. Gholipour
Author:
J. Maddock
Author:
N.I. Zheludev
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