High-impedance metasurfaces with interwoven conductor patterns

A. Vallecchi, R. J. Langley, A. G. Schuchinsky

Research output: Chapter in Book/Report/Conference proceedingConference contribution

2 Citations (Scopus)

Abstract

High impedance metasurfaces (HIMSs) formed by interwoven conductor arrays are proposed. Bandwidth comparable with that of the basic square patches is achieved at an order of magnitude smaller unit cells. The presented structures are apt for small mobile terminals and low frequency applications.

Original languageEnglish
Title of host publicationAdvanced Electromagnetic Materials in Microwaves and Optics (METAMATERIALS), 2014 8th International Congress on
PublisherInstitute of Electrical and Electronics Engineers (IEEE)
Pages280-282
Number of pages3
ISBN (Electronic)9781479934522
ISBN (Print)9781479934508
DOIs
Publication statusPublished - 25 Aug 2014
Event2014 8th International Congress on Advanced Electromagnetic Materials in Microwaves and Optics, METAMATERIALS 2014 - Copenhagen, Denmark
Duration: 25 Aug 201428 Aug 2014

Conference

Conference2014 8th International Congress on Advanced Electromagnetic Materials in Microwaves and Optics, METAMATERIALS 2014
CountryDenmark
CityCopenhagen
Period25/08/201428/08/2014

Fingerprint

conductors
impedance
low frequencies
bandwidth
Bandwidth
cells

Cite this

Vallecchi, A., Langley, R. J., & Schuchinsky, A. G. (2014). High-impedance metasurfaces with interwoven conductor patterns. In Advanced Electromagnetic Materials in Microwaves and Optics (METAMATERIALS), 2014 8th International Congress on (pp. 280-282). Institute of Electrical and Electronics Engineers (IEEE). https://doi.org/10.1109/MetaMaterials.2014.6948675
Vallecchi, A. ; Langley, R. J. ; Schuchinsky, A. G. / High-impedance metasurfaces with interwoven conductor patterns. Advanced Electromagnetic Materials in Microwaves and Optics (METAMATERIALS), 2014 8th International Congress on. Institute of Electrical and Electronics Engineers (IEEE), 2014. pp. 280-282
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Vallecchi, A, Langley, RJ & Schuchinsky, AG 2014, High-impedance metasurfaces with interwoven conductor patterns. in Advanced Electromagnetic Materials in Microwaves and Optics (METAMATERIALS), 2014 8th International Congress on. Institute of Electrical and Electronics Engineers (IEEE), pp. 280-282, 2014 8th International Congress on Advanced Electromagnetic Materials in Microwaves and Optics, METAMATERIALS 2014, Copenhagen, Denmark, 25/08/2014. https://doi.org/10.1109/MetaMaterials.2014.6948675

High-impedance metasurfaces with interwoven conductor patterns. / Vallecchi, A.; Langley, R. J.; Schuchinsky, A. G.

Advanced Electromagnetic Materials in Microwaves and Optics (METAMATERIALS), 2014 8th International Congress on. Institute of Electrical and Electronics Engineers (IEEE), 2014. p. 280-282.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

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AU - Vallecchi, A.

AU - Langley, R. J.

AU - Schuchinsky, A. G.

PY - 2014/8/25

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N2 - High impedance metasurfaces (HIMSs) formed by interwoven conductor arrays are proposed. Bandwidth comparable with that of the basic square patches is achieved at an order of magnitude smaller unit cells. The presented structures are apt for small mobile terminals and low frequency applications.

AB - High impedance metasurfaces (HIMSs) formed by interwoven conductor arrays are proposed. Bandwidth comparable with that of the basic square patches is achieved at an order of magnitude smaller unit cells. The presented structures are apt for small mobile terminals and low frequency applications.

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DO - 10.1109/MetaMaterials.2014.6948675

M3 - Conference contribution

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BT - Advanced Electromagnetic Materials in Microwaves and Optics (METAMATERIALS), 2014 8th International Congress on

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Vallecchi A, Langley RJ, Schuchinsky AG. High-impedance metasurfaces with interwoven conductor patterns. In Advanced Electromagnetic Materials in Microwaves and Optics (METAMATERIALS), 2014 8th International Congress on. Institute of Electrical and Electronics Engineers (IEEE). 2014. p. 280-282 https://doi.org/10.1109/MetaMaterials.2014.6948675