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Design of resonator based multi-band absorber and sensor applications

2023
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Advisor: Prof. Dr. Sıddık Cumhur Başaran

Abstract (EN)

In this thesis, resonator-based multi-band absorber design and sensor applications have been investigated. The proposed designs consist of a resonator at the top, a dielectric substrate in the middle and a ground plane at the bottom. In the designs, asymmetric X-shaped resonator and metamaterial elements such as split ring resonator (SRR), electric LC resonator (ELC) are used as frequency determining elements. A relatively miniaturized tri-band absorber covering WiMAX and WLAN bands has been designed in the simulation environment using three circular and concentric SRR. The ELC resonator, which is a metamaterial element, is placed on a 3D printed dielectric substrate to design absorber sensor. There is a cavity in the 3D-printed substrate to integrate the samples into the sensor. Thanks to the cavity, both solid and liquid analyses can be performed. It is a monolithic and simple structure, so it is effortless to manufacture and implement. To validate this design, the absorber sensor is fabricated, measured, and analytically modeled. A compact absorber has been designed using an X-shaped resonator that exhibits single or dual-band behavior depending on whether the arm lengths are symmetric or asymmetric. The sensor performance of this structure consisting of a resonator and a substrate has been investigated in simulation and measurement. In this context, the asymmetric X-shaped absorber is found to be more sensitive when compared with two SRR-based absorber sensors with different absorption frequencies. Then, two asymmetric X-shaped resonators with varying lengths of arm are placed on denim fabric used as a substrate to obtain a four-band absorber. This quad-band design, whose numerical and experimental results are in perfect agreement, is a good candidate for wearable applications. Lastly, in a simulation environment, frequency tunable absorbers are designed by integrating PIN and varactor diodes into the asymmetric X-shaped resonator. Thanks to the proposed designs, the absorption frequencies do not remain fixed after fabrication like conventional absorbers, and the applications of the absorber are expanded.

Author

Dr. Alparslan Çınar

How to Cite

Alparslan Çınar (Doctorate thesis). Design of resonator based multi-band absorber and sensor applications, 2023, Akdeniz University.

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