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Metamaterial's effective electric permittivity model

机译:超材料的有效介电常数模型

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In this paper we study an artificial material composed of a periodic structure defined by a unit cell containing cylindrical electrical conductors. These materials, called metamaterials, have special electromagnetic properties such as simultaneously negative magnetic permeability and electrical permittivity, which could not be obtained from homogeneous materials that exist in nature. An analytical model for effective electrical permittivity of the entire system in terms of the dimensions of the unit cell and frequency is obtained. We also study how to vary the resonance frequency of the artificial material in which the effective permittivity is negative. This analysis enables the fabrication of structures whose properties can be modified to be applied in shieldings. Kramers Kronig relations, suited for verifying causality in electrical permittivity models by relating the real and the imaginary parts of the dielectric permittivity is also studied. The imaginary part of the effective permittivity has been obtained numerically by applying the Hilbert transform to the real part of the permittivity simulated by the proposed Model thus verifying the Kramers-Kronig relations.
机译:在本文中,我们研究了由周期性结构组成的人造材料,该周期性结构由包含圆柱形电导体的晶胞定义。这些材料称为超材料,具有特殊的电磁特性,例如同时具有负磁导率和介电常数,这是无法从自然界中存在的均质材料获得的。获得了关于整个系统的有效介电常数的单位面积和频率的解析模型。我们还研究了如何改变有效介电常数为负的人造材料的共振频率。该分析使得能够制造其性质可以被修改的结构应用于屏蔽。还研究了Kramers Kronig关系,该关系适合于通过将介电常数的实部和虚部相关联来验证介电常数模型中的因果关系。有效介电常数的虚部已通过将希尔伯特变换应用于所提出的模型模拟的介电常数的实部而得到了数值,从而验证了Kramers-Kronig关系。

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