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Miniaturization for ultrathin metamaterial perfect absorber in the VHF band.


ABSTRACT: An efficient resolution for ultrathin metamaterial perfect absorber (MPA) is proposed and demonstrated in the VHF radio band (30-300?MHz). By adjusting the lumped capacitors and the through vertical interconnects, the absorber is miniaturized to be only ?/816 and ?/84 for its thickness and periodicity with respect to the operating wavelength (at 102?MHz), respectively. The detailed simulation and calculation show that the MPA can maintain an absorption rate over 90% in a certain range of incident angle and with a wide variation of capacitance. Additionally, we utilized the advantages of the initial single-band structure to realize a nearly perfect dual-band absorber in the same range. The results were confirmed by both simulation and experiment at oblique incidence angles up to 50°. Our work is expected to contribute to the actualization of future metamaterial-based devices working at radio frequency.

SUBMITTER: Khuyen BX 

PROVIDER: S-EPMC5361105 | biostudies-literature | 2017 Mar

REPOSITORIES: biostudies-literature

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Miniaturization for ultrathin metamaterial perfect absorber in the VHF band.

Khuyen Bui Xuan BX   Tung Bui Son BS   Yoo Young Joon YJ   Kim Young Ju YJ   Kim Ki Won KW   Chen Liang-Yao LY   Lam Vu Dinh VD   Lee YoungPak Y  

Scientific reports 20170322


An efficient resolution for ultrathin metamaterial perfect absorber (MPA) is proposed and demonstrated in the VHF radio band (30-300 MHz). By adjusting the lumped capacitors and the through vertical interconnects, the absorber is miniaturized to be only λ/816 and λ/84 for its thickness and periodicity with respect to the operating wavelength (at 102 MHz), respectively. The detailed simulation and calculation show that the MPA can maintain an absorption rate over 90% in a certain range of inciden  ...[more]

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