首页|A flexible ultra-broadband multi-layered absorber working at 2 GHz-40 GHz printed by resistive ink

A flexible ultra-broadband multi-layered absorber working at 2 GHz-40 GHz printed by resistive ink

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A flexible extra broadband metamaterial absorber(MMA)stacked with five layers working at 2 GHz-40 GHz is in-vestigated.Each layer is composed of polyvinyl chloride(PVC),polyimide(PI),and a frequency selective surface(FSS),which is printed on PI using conductive ink.To investigate this absorber,both one-dimensional analogous circuit analy-sis and three-dimensional full-wave simulation based on a physical model are provided.Various crucial electromagnetic properties,such as absorption,effective impedance,complex permittivity and permeability,electric current distribution and magnetic field distribution at resonant peak points,are studied in detail.Analysis shows that the working frequency of this absorber covers entire S,C,X,Ku,K and Ka bands with a minimum thickness of 0.098λmax(λmax is the maximum wave-length in the absorption band),and the fractional bandwidth(FBW)reaches 181.1%.Moreover,the reflection coefficient is less than-10 dB at 1.998 GHz-40.056 GHz at normal incidence,and the absorptivity of the plane wave is greater than 80%when the incident angle is smaller than 50°.Furthermore,the proposed absorber is experimentally validated,and the experimental results show good agreement with the simulation results,which demonstrates the potential applicability of this absorber at 2 GHz-40 GHz.

extra broadbandphysical modelflexible metamaterial absorbermulti-layerfrequency selective surface

汪涛、闫玉伦、陈巩华、李迎、胡俊、毛剑波

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School of Microelectronics,Hefei University of Technology,Hefei 230601,China

Special Display and Imaging Technology Innovation Center of Anhui Province,Academy of Photoelectric Technology,Hefei University of Technology,Hefei 230027,China

China Postdoctoral science FoundationAnhui Province Postdoctoral Science Foundation,China

2020M6718342020A397

2024

中国物理B(英文版)
中国物理学会和中国科学院物理研究所

中国物理B(英文版)

CSTPCDEI
影响因子:0.995
ISSN:1674-1056
年,卷(期):2024.33(2)
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