Title :
Polarization controllable THz stereometamaterial absorber
Author :
Hokmabadi, Mohammad Parvinnezhad ; Heimbeck, Martin S. ; Wilbert, David S. ; Kung, Peter ; Everitt, Henry O. ; Kim, Song Min
Author_Institution :
Electr. & Comput. Eng. Dept., Univ. of Alabama, Tuscaloosa, AL, USA
Abstract :
Spatially different arrangements of identical metaatoms in a unit cell bring about distinct properties in stereometamaterials. Integrating the stereometamaterial into a perfect metamaterial absorber, we designed, fabricated, and characterized a device with single or double band absorption responses and an absorption/reflection switching characteristic dependent upon the polarization of the incident THz wave. Two non-concentric Cu rings tightly coupled via a polyimide layer form the stereometamaterial frequency selective surface (FSS). The FSS is placed on another polyimide layer deposited on a Cu backplane. Despite the rotational symmetry of the rings, non-centricity breaks the reflection symmetry of the FSS, leading to a unique interaction between the rings and a Cu backplane. Interaction between dipoles on an FSS and their mirror images due to Cu backplane is studied to gain a better understanding of this device.
Keywords :
electromagnetic metamaterials; electromagnetic wave absorption; electromagnetic wave reflection; frequency selective surfaces; FSS; absorption-reflection switching characteristic; double band absorption; metaatoms; metamaterial absorber; mirror images; polarization controllable THz stereometamaterial absorber; polyimide layer; reflection symmetry; rotational symmetry; stereometamaterial frequency selective surface; Absorption; Backplanes; Current density; Frequency selective surfaces; Metamaterials; Reflection; Resonant frequency;
Conference_Titel :
Infrared, Millimeter, and Terahertz waves (IRMMW-THz), 2014 39th International Conference on
Conference_Location :
Tucson, AZ
DOI :
10.1109/IRMMW-THz.2014.6956184