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Transient Reflection Properties of a Dispersive and Lossy Bi-Isotropic Slab With an Anisotropic Laminated Composite Backing

机译:具有各向异性层合复合背衬的弥散有损双各向同性平板的瞬态反射特性

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This paper presents a detailed analysis of the transient reflection from a general bi-isotropic slab backed by a laminated composite. Either a nonreciprocally Tellegen medium or a reciprocally dispersive chiral medium with losses is considered as the bi-isotropic slab. The laminated composite is a graphite-fiber-reinforced-plastic composite (GFRPC), which has been widely used as a replacement for metals and may be treated as a multilayered anisotropic medium from the electromagnetic point of view. For the analysis, a theoretical model is developed based on a state-equation approach. On the basis of this model, both the time-domain and the frequency-domain plane-wave reflection results are obtained and studied. The factors affecting the results, such as the material parameters of the bi-isotropic slab and the fiber-orientation pattern of the GFRPC, are investigated in detail. Some special reflection properties, such as the twist-polarizer reflection and the antireflection, are observed based on this investigation. The properties may lead to a novel transient absorber technology for electromagnetic compatibility (EMC) applications.
机译:本文对由层压复合材料支撑的普通双各向同性平板的瞬态反射进行了详细分析。具有损耗的不可逆Tellegen介质或可逆分散手性介质被视为双各向同性平板。层压复合材料是石墨纤维增强塑料复合材料(GFRPC),已被广泛用作金属的替代品,从电磁学角度来看,可以将其视为多层各向异性介质。为了进行分析,基于状态方程方法开发了理论模型。在此模型的基础上,获得并研究了时域和频域的平面波反射结果。详细研究了影响结果的因素,例如双各向同性平板的材料参数和GFRPC的纤维取向图案。在此基础上,观察到了一些特殊的反射特性,例如扭曲偏振镜的反射和抗反射。这些特性可能会导致一种用于电磁兼容性(EMC)应用的新型瞬态吸收器技术。

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