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Transmitting-absorbing material based on resistive metasurface

机译:基于电阻性元曲面的传动吸收材料

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摘要

We theoretically and experimentally studied a transmitting-absorbing material that had transmission window within the absorption band. The material had a sandwich structure comprised of a resistive metasurface, a dielectric substrate and a metallic slot frequency-selective surface (FSS). The material showed lower reflectivity in a wide frequency range; the -10 dB absorbing bandwidth could be over 76% (64% in experiments). Meanwhile in the middle of the range the transmittance up to -1.7 dB was observed at about 10 GHz where slot FSS had good transparency. We showed the lower reflectivity of our material was mainly due to the absorption of incident radiation energy except for the transparent window where the radiation energy passed through the materials. The transmitting window could be adjusted by changing the geometry parameters of slot FSS. Our material had the advantages of thin thickness, small size of unit cell, convenient fabrication and easy to extend to other frequency bands. This kind of transmitting-absorbing material provided a new way for the applications, such as light harvesting, sensing and radome materials.
机译:理论上和实验研究了在吸收带内具有透射窗的传动吸收材料。该材料具有夹层结构,该夹层结构包括电阻元表面,介电基板和金属槽频率选择性表面(FSS)。该材料在宽频范围内显示出较低的反射率; -10 DB吸收带宽可超过76%(实验中的64%)。同时在范围内,在大约10 GHz的范围内,在约10GHz中观察到透射率良好的透明度。我们表明,我们的材料的较低反射率主要是由于透明窗口的入射辐射能量的吸收,除了透明窗口,其中辐射能量通过材料。可以通过改变槽FSS的几何参数来调整发送窗口。我们的材料具有薄厚度薄,单位细胞尺寸小,制造方便,易于延伸到其他频段。这种传动吸收材料为应用提供了一种新的方式,例如光收集,感测和弧度材料。

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