Mechanically actuated frequency reconfigurable metamaterial absorber

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초록

In this paper, a mechanically actuated frequency reconfigurable metamaterial electromagnetic absorber is proposed. The absorber's metamaterial unit cell is designed to exploit LC resonance from inductive and capacitive coupling. Because this inductance and capacitance determine the absorber's resonant frequency, we propose a mechanical tuning method that changes the resonant frequency by changing the overall thickness of the metamaterial unit cell. The proposed unit cell consists of an FR4 dielectric substrate with fixed thickness and an air substrate with tunable thickness. When the air substrate thickness is varied over the range of 17 mm to 26 mm, the absorber's resonant frequency changes from 6.96 GHz to 5.79 GHz in EM simulation. In order to verify the proposed idea, a metamaterial absorber was fabricated as a 17 × 17 array of unit cells and a linear actuator was used to control the thickness of the air substrate. We experimentally demonstrated that the absorption frequency changes from 6.96 GHz to 5.78 GHz with 0.12 (GHz/mm) sensitivity when the air substrate thickness is mechanically changed from 17 mm to 26 mm. © 2019 Elsevier B.V.

키워드

Actuator; Electromagnetic absorber; Frequency reconfigurable; Mechanically actuated metamaterial; Metamaterial; Tunability; Actuators; Cells; Cytology; Dielectric materials; Linear actuators; Natural frequencies; Absorption frequencies; Electromagnetic absorbers; Inductive and capacitive couplings; Mechanical tuning methods; Metamaterial absorbers; Reconfigurable; Resonant frequency change; Tunabilities; Metamaterials
제목
Mechanically actuated frequency reconfigurable metamaterial absorber
저자
Kim, J.; Jeong, H.; Lim, Sungjoon
DOI
10.1016/j.sna.2019.111619
발행일
2019-11
유형
Article
저널명
Sensors and Actuators, A: Physical
권
299