2017
DOI: 10.1002/andp.201700252
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Characteristic Attributes of Multiple Cascaded Terahertz Metasurfaces with Magnetically Tunable Subwavelength Resonators

Abstract: The characteristics of multiple cascaded metasurfaces comprising H-shaped, magnetostatically controllable, subwavelength terahertz (THz) resonators made of InAs were systematically investigated, using a commercial solver based on the finite-integration method, for the design of tunable filters. Three configurations of the biasing magnetostatic field were compared with each other as well as with the bias-free configuration for filtering of normally incident linearly polarized plane waves. A close study of only … Show more

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Cited by 16 publications
(12 citation statements)
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References 55 publications
(87 reference statements)
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“…Different dynamic tuning mechanisms have been investigated. They include electric 1 3 , magnetic 4 , 5 , thermal 6 10 , and photonic 11 control of electromagnetic constitutive parameters. Infiltration by gaseous species is also a tuning mechanism 12 .…”
Section: Introductionmentioning
confidence: 99%
“…Different dynamic tuning mechanisms have been investigated. They include electric 1 3 , magnetic 4 , 5 , thermal 6 10 , and photonic 11 control of electromagnetic constitutive parameters. Infiltration by gaseous species is also a tuning mechanism 12 .…”
Section: Introductionmentioning
confidence: 99%
“…The considered substrates include glass ( ε s  = 2.25), Si ( ε s  = 11.7), Ge ( ε s  = 16), and a material with ε s  = 35 60 . It is seen in Fig.…”
Section: Resultsmentioning
confidence: 99%
“…Finally, magnetic-responsive structures without ferrite materials have been proposed, with examples including THz metamaterials and filters incorporating semiconductor resonant structures [88] and bio-inspired microplate arrays for tuned optics. [89] The latter is cast as a magnetically responsive metasurface with local tunability: by carefully programming the strength and spatial distribution of the external magnetic field used in the assembly process, one can attain precise positioning of a single nano-sized object in a locally magnetized area, apart from globally synchronized motion of a large collection of objects.…”
Section: Magnetic Tuningmentioning
confidence: 99%