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Ultra-Wideband and Wide-Angle Microwave Metamaterial Absorber

机译:超宽带和广角微波超材料吸收器

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摘要

In order to extend the performance of radar absorbing materials, it is necessary to design new structures with wideband properties and large angles of incidence which are also as thin as possible. The objective of this work, realized within the framework of the SAFAS project (self-complementary surface with low signature) is, then, the development of an ultra-wideband microwave absorber of low thickness. The design of such material requires a multilayered structure composed with dielectric layers, metasurfaces, and wide-angle impedance matching layers. This solution has been realized with on-the-shelf materials, and measured to validate the concept. At normal incidence, the bandwidth ratio, defined for a magnitude of the reflection coefficient below −10 dB, is 4.7:1 for an absorber with a total thickness of 11.5 mm, which corresponds to λ/7 at the lowest operating frequency. For an incidence of 60°, this bandwidth ratio is reduced to 3.8:1, but the device remains ultra-wideband.
机译:为了扩展雷达吸收材料的性能,有必要设计一种具有宽带特性和大入射角的新型结构,该结构也应尽可能薄。因此,在SAFAS项目(具有低特征的自互补表面)的框架内实现这项工作的目的是开发一种低厚度的超宽带微波吸收器。这种材料的设计需要由介电层,超表面和广角阻抗匹配层组成的多层结构。该解决方案已使用现成的材料实现,并经过测量以验证该概念。在法向入射时,对于总厚度为11.5 mm的吸收体,带宽系数(定义为低于-10 dB的反射系数的幅度)为4.7:1,对应于最低工作频率下的λ/ 7。对于60°的入射角,该带宽比率降低至3.8:1,但该设备仍保持超宽带。

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