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Ultra-subwavelength thickness for dual/triple-band metamaterial absorber at very low frequency

机译:双/三频超材料吸收体的超亚波长厚度非常低的频率

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摘要

An integrated model utilizing external parasitic capacitors for a dual-band metamaterial perfect absorber (DMPA) is proposed and demonstrated in the UHF radio band. By adjusting the lumped capacitors on a simple meta-surface, the thickness of absorber is reduced to be only 1/378 and 1/320 with respect to the operating wavelength at 305 and 360.5 MHz, respectively. The simulations and the experiments confirm that the DMPA can maintain an absorption over 91% in a wide range of incident angle (up to 55°) and independent of the polarization of incident radiation. Additionally, we examine the integrated model for smaller dual-band absorber and absorption performance at higher frequencies (LTE band). Finally, we consolidate our approach by fabricating an ultrathin triple-band perfect absorber miniaturized to be only 1/591 of the longest operating wavelength. Our work is expected to contribute to the actualization of metamaterial-based devices working at radio frequency.
机译:提出并利用超寄生无线电双频完美吸收器(DMPA)的外部寄生电容器的集成模型。通过在简单的元表面上调整集总电容器,相对于305和360.5 wavelengthMHz的工作波长,吸收体的厚度分别减小到仅为1/378和1/320。仿真和实验证实,DMPA可以在宽入射角范围(最大55°)内保持91%以上的吸收,并且与入射辐射的偏振无关。此外,我们检查了集成模型,该模型具有较小的双频带吸收器和较高频率(LTE频带)的吸收性能。最后,我们通过制造超薄三频完美吸收体来巩固我们的方法,该吸收体被最小化为最长工作波长的1/591。预计我们的工作将有助于实现工作在射频下的基于超材料的设备。

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