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Ultra-wideband microwave absorber by connecting multiple absorption bands of two different-sized hyperbolic metamaterial waveguide arrays

机译:通过连接两个不同大小的双曲线超材料波导阵列的多个吸收带的超宽带微波吸收器

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摘要

Microwave absorbers have important applications in various areas including stealth, camouflage, and antenna. Here, we have designed an ultra-broadband light absorber by integrating two different-sized tapered hyperbolic metamaterial (HMM) waveguides, each of which has wide but different absorption bands due to broadband slow-light response, into a unit cell. Both the numerical and experimental results demonstrate that in such a design strategy, the low absorption bands between high absorption bands with a single-sized tapered HMM waveguide array can be effectively eliminated, resulting in a largely expanded absorption bandwidth ranging from 2.3 to 40 GHz. The presented ultra-broadband light absorber is also insensitive to polarization and robust against incident angle. Our results offer a further step in developing practical artificial electromagnetic absorbers, which will impact a broad range of applications at microwave frequencies.
机译:微波吸收器在包括隐身,伪装和天线在内的各个领域都有重要的应用。在这里,我们通过将两个不同尺寸的锥形双曲线超材料(HMM)波导集成到一个晶胞中,从而设计了一种超宽带光吸收器,每个波导都具有宽但不同的吸收带,这归因于宽带慢光响应。数值和实验结果均表明,采用这种设计策略,可以有效消除具有单个尺寸的锥形HMM波导阵列的高吸收带之间的低吸收带,从而使吸收带宽从2.3扩展到40 GHz。提出的超宽带光吸收器还对偏振不敏感并且对入射角具有鲁棒性。我们的结果为开发实用的人造电磁吸收器迈出了又一步,这将影响微波频率下的广泛应用。

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