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Maxwell Garnett theory limitations in the analysis of bi-anisotropic composites

机译:Maxwell Garnett理论在双各向异性复合材料分析中的局限性

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The constitutive parameters of metamaterials composed of asymmetrical inclusions are inaccurate when calculated using Maxwell Garnett theory. In this study, the authors discuss some particular cases of metamaterials composed of asymmetrical inclusions to demonstrate this statement. The unit cell single element dyadic is derived numerically using the induced currents by incident plane waves and is computed by point matching method of moments. The composite effective parameters approximated by Maxwell Garnett model were used to obtain the reflection and transmission coefficients from a bulk slab. The derived results were compared to the simulated numerical results with High Frequency Structure Simulator (HFSS) software. The scattering parameters from symmetrical and asymmetrical inclusions were compared and a parametric study was conducted. The scattering parameters are in good agreement when the material under consideration is composed of symmetrical inclusions and hold even for higher frequencies than Maxwell Garnett model theory limits. For asymmetrical inclusions the model provides inaccurate scattering parameters results. This discrepancy is especially pronounced when the illuminating field polarisation coincides with the inclusion asymmetry direction. These observations should be considered when Maxwell Garnett model is used for effective parameters analytical approximation.
机译:用麦克斯韦·加内特理论计算时,由不对称夹杂物组成的超材料的本构参数不准确。在这项研究中,作者讨论了由不对称夹杂物组成的超材料的某些特殊情况,以证明这一说法。用入射平面波的感应电流数值推导单位晶格单元素二元并通过矩的点匹配法计算。用麦克斯韦·加内特模型近似的复合有效参数来获得大块板的反射和透射系数。使用高频结构模拟器(HFSS)软件将得出的结果与模拟的数值结果进行比较。比较了对称夹杂物和非对称夹杂物的散射参数,并进行了参数研究。当所考虑的材料由对称夹杂物组成时,其散射参数非常一致,甚至在比麦克斯韦·加内特模型理论极限更高的频率下也能保持散射参数。对于非对称夹杂物,模型提供了不准确的散射参数结果。当照明场极化与夹杂物不对称方向一致时,这种差异尤其明显。当将Maxwell Garnett模型用于有效参数解析近似时,应考虑这些观察结果。

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