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  4. Effects of resonator geometry and substrate stiffness on the tunability of a deformable microwave metasurface
 
research article

Effects of resonator geometry and substrate stiffness on the tunability of a deformable microwave metasurface

Karimi Mahabadi, Rayehe
•
Goudarzi, Taha
•
Fleury, Romain  
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January 25, 2022
AEU - International Journal of Electronics and Communications

Tunable metasurfaces can shift their resonant frequency through different approaches, one of which is applying mechanical deformations. Here, we show the effects of two key factors on the tunability of deformable metasurfaces; the resonator geometry and substrate stiffness. To show the effects, we compared the tunability of unit cells with three resonator geometries and three common substrates at microwave frequencies from 1 GHz to 10 GHz under a given mechanical deformation. We showed that the resonator geometry affects the deformation field, as a consequence, causes different resonant frequency shifts. Moreover, it affects the stress field in the metasurface which in turn limits the maximum allowable deformation before mechanical failure. In addition, increasing the substrate stiffness has controversial effects on the tunability of the metasurface. It can either increase or decrease the tuning spectrum by transferring more deformation to the resonators and constraining the rigid body motions. On the other hand, increasing the substrate stiffness increases the force required for tuning which is a limiting factor for applications. Accordingly, a trade-off exists between the desired tuning spectrum and the required amount of force for changing the metasurface response. Both of these factors limit the functionality of tunable metasurfaces.

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Type
research article
DOI
10.1016/j.aeue.2022.154123
Author(s)
Karimi Mahabadi, Rayehe
Goudarzi, Taha
Fleury, Romain  
Sohrabpour, Saeed
Naghdabadi, Reza
Date Issued

2022-01-25

Published in
AEU - International Journal of Electronics and Communications
Volume

146

Article Number

154123

Subjects

Tunable metasurface

•

Mechanical deformation

•

Microwaves

•

Resonator geometry

•

Substrate stiffness

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LWE  
Available on Infoscience
January 25, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/184732
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