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首页> 外文期刊>Scientific reports. >Thermally Tunable Ultra-wideband Metamaterial Absorbers based on Three-dimensional Water-substrate construction
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Thermally Tunable Ultra-wideband Metamaterial Absorbers based on Three-dimensional Water-substrate construction

机译:基于三维水基板结构的热可调超宽带超材料吸收器

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Distilled water has frequency dispersive characteristic and high value of imaginary part in permittivity, which can be seen as a good candidate of broadband metamaterial absorbers(MAs) in microwave. Here, an interesting idea based on the combination of water-substrate and metallic metamaterial in the three-dimensional construction is proposed, which can achieve outstanding broadband absorption. As a proof, the distilled water is filled into the dielectric reservoir as ultra-thin water-substrate, and then the water-substrates are arranged on the metal backplane periodically as three-dimensional water-substrate array(TWA). Simulation shows that the TWA achieves broadband absorption with the efficiency more than 90% from 8.3 to 21.0?GHz. Then, the trigonal metallic fishbone structure is introduced here between the water-substrate and the dielectric reservoir periodically as three-dimensional water-substrate metamaterial absorber(TWMA). The proposed TWMA could achieve ultra-broadband absorption from 2.6 to 16.8?GHz, which has increase by 64.8% in relative absorption bandwidth. Meanwhile, due to the participation of distilled water, the thermally tunable property also deserves to be discussed here. In view of the outstanding performance, it is worth to expect a wide range of applications to emerge inspired from the proposed construction.
机译:蒸馏水具有介电常数的频率分散特性和高值,可以被视为微波宽带超材料吸收剂(MAS)的良好候选者。在这里,提出了一种基于三维结构中的水基和金属超材料组合的有趣思路,可以实现出色的宽带吸收。作为证据,将蒸馏水填充到电介质贮存器中作为超薄水基材,然后将水基板周期性地布置在金属底板上,作为三维水基阵列(TWA)。仿真表明,TWA达到宽带吸收,效率从8.3到21.0的效率超过90%?GHz。然后,将三角金属鱼骨结构在水基板和介电贮存器周期性地作为三维水基超材料吸收器(TWMA)之间引入。所提出的TWMA可以从2.6到16.8°GHz的超宽带吸收,在相对吸收带宽中增加了64.8%。同时,由于蒸馏水的参与,在这里也应该讨论热调节。鉴于出色的表现,值得期望广泛的应用来促进拟议的建筑。

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