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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Effects of Spatial Dispersion on Reflection From Mushroom-Type Artificial Impedance Surfaces
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Effects of Spatial Dispersion on Reflection From Mushroom-Type Artificial Impedance Surfaces

机译:空间色散对蘑菇型人工阻抗表面反射的影响

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In a spatially dispersive medium, the electric dipole moment of an inclusion cannot be related to the macroscopic electric field through a local relation. Several recent works have emphasized the role of spatial dispersion in wire media, and demonstrated that arrays of parallel metallic wires may behave very differently from a uniaxial local material with negative permittivity. Here, we investigate the effect of spatial dispersion on reflection properties of the mushroom structure introduced by Sievenpiper, based on local and nonlocal homogenization methods. The objective of this paper is to clarify the role of spatial dispersion in the mushroom structure and demonstrate that, under some conditions, it is suppressed. The metamaterial substrate, or metasurface is modeled as a wire medium covered with an impedance surface. Surprisingly, it is found that, in such a configuration, the effects of spatial dispersion may be nearly suppressed when the slab is electrically thin, and that the wire medium can be modeled very accurately using a local model.
机译:在空间弥散介质中,夹杂物的电偶极矩不能通过局部关系与宏观电场相关。最近的几项工作强调了线介质中空间分散的作用,并证明了平行金属线阵列的行为可能与具有负介电常数的单轴局部材料非常不同。在这里,我们基于局部和非局部均化方法,研究空间色散对Sievenpiper引入的蘑菇结构的反射特性的影响。本文的目的是阐明空间散布在蘑菇结构中的作用,并证明在某些条件下它可以被抑制。将超材料基底或超表面建模为覆盖有阻抗表面的导线介质。令人惊讶地发现,在这种构造中,当板坯电薄时,可以几乎抑制空间分散的影响,并且可以使用局部模型非常精确地对线介质进行建模。

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