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Temperature control of Fano resonances and transmission in superconducting metamaterials

Temperature control of Fano resonances and transmission in superconducting metamaterials
Temperature control of Fano resonances and transmission in superconducting metamaterials
Losses are the main evil that limits the use of metamaterials in practical applications. While radiation losses may be controlled by design, Joule losses are hereditary to the metamaterial structures. An exception is superconducting metamaterials, where Joule losses can be uniquely controlled with temperature in a very wide range. We put this in use by demonstrating temperature-dependent transmission in the millimeter-wave part of the spectrum in high-Tc superconducting cuprate metamaterials supporting sub-radiant resonances of Fano type.
1094-4087
9015-9019
Fedotov, V.A.
3725f5cc-2d0b-4e61-95c5-26d187c84f25
Tsiatmas, A.
dcdf5850-3825-490d-9dd2-4114d4e2e4b2
Shi, J.H.
89a3c824-71cc-457e-88b7-9e0c34d4cb2c
Buckingham, A.R.
548e73f8-e1ed-4bc7-bf30-792048929658
de Groot, P.A.J.
98c21141-cf90-4e5c-8f2b-d2aae8efb84d
Chen, Y.
0bfb3083-4cd2-4463-a7a4-f48c4158b15a
Wang, S.
a2223997-9f42-425b-b0c6-1bcb64d9b8fc
Zheludev, N.I.
32fb6af7-97e4-4d11-bca6-805745e40cc6
Fedotov, V.A.
3725f5cc-2d0b-4e61-95c5-26d187c84f25
Tsiatmas, A.
dcdf5850-3825-490d-9dd2-4114d4e2e4b2
Shi, J.H.
89a3c824-71cc-457e-88b7-9e0c34d4cb2c
Buckingham, A.R.
548e73f8-e1ed-4bc7-bf30-792048929658
de Groot, P.A.J.
98c21141-cf90-4e5c-8f2b-d2aae8efb84d
Chen, Y.
0bfb3083-4cd2-4463-a7a4-f48c4158b15a
Wang, S.
a2223997-9f42-425b-b0c6-1bcb64d9b8fc
Zheludev, N.I.
32fb6af7-97e4-4d11-bca6-805745e40cc6

Fedotov, V.A., Tsiatmas, A., Shi, J.H., Buckingham, A.R., de Groot, P.A.J., Chen, Y., Wang, S. and Zheludev, N.I. (2010) Temperature control of Fano resonances and transmission in superconducting metamaterials. Optics Express, 18 (9), 9015-9019. (doi:10.1364/OE.18.009015).

Record type: Article

Abstract

Losses are the main evil that limits the use of metamaterials in practical applications. While radiation losses may be controlled by design, Joule losses are hereditary to the metamaterial structures. An exception is superconducting metamaterials, where Joule losses can be uniquely controlled with temperature in a very wide range. We put this in use by demonstrating temperature-dependent transmission in the millimeter-wave part of the spectrum in high-Tc superconducting cuprate metamaterials supporting sub-radiant resonances of Fano type.

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Published date: 26 April 2010

Identifiers

Local EPrints ID: 152923
URI: https://eprints.soton.ac.uk/id/eprint/152923
ISSN: 1094-4087
PURE UUID: 050e9803-d97d-49dc-9e0d-8c8bf5173c81
ORCID for Y. Chen: ORCID iD orcid.org/0000-0003-0383-6113
ORCID for N.I. Zheludev: ORCID iD orcid.org/0000-0002-1013-6636

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Date deposited: 17 May 2010 15:07
Last modified: 26 Nov 2019 02:03

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Contributors

Author: V.A. Fedotov
Author: A. Tsiatmas
Author: J.H. Shi
Author: A.R. Buckingham
Author: P.A.J. de Groot
Author: Y. Chen ORCID iD
Author: S. Wang
Author: N.I. Zheludev ORCID iD

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