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Ekmekci, E.; Strikwerda, A. C.; Fan, K.; Keiser, G.; Zhang, X.; Turhan-Sayan, G.; Averitt, R. D.
{ "DOI": "10.1103/PhysRevB.83.193103", "abstract": "We present frequency tunable metamaterial designs at terahertz (THz) frequencies using broadside coupled split-ring resonator (BC-SRR) arrays. Frequency tuning, arising from changes in near-field coupling, is obtained by in-plane displacement of the two SRR layers. For electrical excitation, the resonance frequency continuously redshifts as a function of displacement. The maximum frequency shift occurs for vertical displacement of half a unit cell, resulting in a shift of 663 GHz (51% of f(0)). We discuss the difference in the BC-SRR response for electrical excitation in comparison to magnetic excitation in terms of hybridization arising from inductive and capacitive coupling.", "author": [ { "family": "Ekmekci", "given": " E." }, { "family": "Strikwerda", "given": " A. C." }, { "family": "Fan", "given": " K." }, { "family": "Keiser", "given": " G." }, { "family": "Zhang", "given": " X." }, { "family": "Turhan-Sayan", "given": " G." }, { "family": "Averitt", "given": " R. D." } ], "container_title": "PHYSICAL REVIEW B", "id": "18415", "issue": "19", "issued": { "date-parts": [ [ 2011, 1, 1 ] ] }, "title": "Frequency tunable terahertz metamaterials using broadside coupled split-ring resonators", "type": "article-journal", "volume": "83" }
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