Optically Transparent Dual-Band Metamaterial Absorber Using Ag Nanowire Screen-Printed Second-Order Cross-Fractal Structures

Author:

Bark Sumin1,Kim Junghyeon1ORCID,Lee Minjae2ORCID,Lim Sungjoon12ORCID

Affiliation:

1. School of Intelligent Semiconductor Engineering, Chung-Ang University, Seoul 06974, Republic of Korea

2. School of Electrical and Electronics Engineering, Chung-Ang University, Seoul 06974, Republic of Korea

Abstract

In this paper, we propose an optically transparent dual-band metamaterial absorber (MMA) that uses Ag nanowire screen-printed fractal structures. The proposed MMA exhibits near-perfect absorption in the C- and K-bands. This dual-band absorption property is achieved through two inductive–capacitive (L-C) resonances located at 6.45 and 21.14 GHz, which are generated by the second-order fractal structures. We analyzed the microwave absorbing mechanisms through the distributions of the surface current and electromagnetic field on the top and bottom layers. The MMA demonstrates an optical transmittance of 63.1% at a wavelength of 550 nm. This high optical transmittance is attained by screen printing transparent Ag nanowire ink onto a transparent PET substrate. Since screen printing is a simple and low-cost fabrication method, the proposed MMA offers the advantages of being low cost while having the properties of optical transparency and effective dual-band absorption. Consequently, it holds great potential for the radar stealth application of C- and K-bands in that it can be attached to the windows of stealth aircraft due to its optical transparency and dual-band near-perfect absorption property.

Funder

National Research Foundation of Korea

MSIT

Chung-Ang University Graduate Research Scholarship

Publisher

MDPI AG

Reference38 articles.

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3. Tong, X. (2008). Advanced Materials and Design for Electromagnetic Interference Shielding, Taylor & Francis Group. [1st ed.].

4. Metamaterial Microwave Absorber (MMA) for Electromagnetic Interference (EMI) Shielding in X-Band;Mishra;Plasmonics,2021

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