We theoretically consider infrared-driven hyperbolic metamaterials able to spatially filter terahertz (THz) radiation. The metamaterial is a slab made of alternating semiconductor and dielectric layers whose homogenized uniaxial response, at THz frequencies, shows principal permittivities of different signs. The gap provided by metamaterial hyperbolic dispersion allows the slab to stop spatial frequencies within a bandwidth tunable by changing the infrared radiation intensity. We numerically prove the device functionality by resorting to full wave simulation coupled to the dynamics of charge carries photoexcited by infrared radiation in semiconductor layers. © 2012 Optical Society of America.

Terahertz active spatial filtering through optically tunable hyperbolic metamaterials

Ciattoni Alessandro;
2012

Abstract

We theoretically consider infrared-driven hyperbolic metamaterials able to spatially filter terahertz (THz) radiation. The metamaterial is a slab made of alternating semiconductor and dielectric layers whose homogenized uniaxial response, at THz frequencies, shows principal permittivities of different signs. The gap provided by metamaterial hyperbolic dispersion allows the slab to stop spatial frequencies within a bandwidth tunable by changing the infrared radiation intensity. We numerically prove the device functionality by resorting to full wave simulation coupled to the dynamics of charge carries photoexcited by infrared radiation in semiconductor layers. © 2012 Optical Society of America.
2012
Inglese
37
16
3345
3347
http://www.scopus.com/record/display.url?eid=2-s2.0-84865461073&origin=inward
hyperbolic metamaterials
terahertz
6
info:eu-repo/semantics/article
262
Rizza, Carlo; Rizza, Carlo; Ciattoni, Alessandro; Spinozzi, Elisa; Columbo, Lorenzo; Columbo, Lorenzo
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/271244
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