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Numerical calculation of electromagnetic properties including chirality parameters for uniaxial bianisotropic media

机译:单轴各向异性介质包括手性参数的电磁特性的数值计算

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Through the use of conductive straight wires or coils the electromagnetic properties of a composite material can be modified. The asymmetric geometry of the coils creates an overall chiral response. The polarization vectors rotate as an electromagnetic wave travels through such a medium. To calculate the chirality of a medium prior to its manufacturing, we developed a method to extract all four electromagnetic material parameter tensors for a general uniaxial bianisotropic composite based on the numerical simulation of the electromagnetic fields. Our method uses appropriate line and surface field averages in a single unit cell of the periodic structure of the composite material. These overall field quantities have physical meaning only when the microscopic variation of the electromagnetic fields in the scale of the unit cell is not important, that is when the wavelength of interest is significantly larger than the maximum linear dimension of the unit cell. The overall constitutive relations of the periodic structure can then be obtained from the relations among the average quantities.
机译:通过使用导电直线或线圈,可以改变复合材料的电磁性能。线圈的不对称几何形状产生整体手性响应。极化矢量随着电磁波穿过这种介质而旋转。为了计算介质在制造之前的手性,我们基于电磁场的数值模拟,开发了一种方法来提取一般单轴双向各向异性复合材料的所有四个电磁材料参数张量。我们的方法在复合材料的周期性结构的单个晶胞中使用适当的线和表面场平均值。仅当在单位晶格的尺度上电磁场的微观变化不重要时,即当感兴趣的波长显着大于单位晶胞的最大线性尺寸时,这些总场量才具有物理意义。然后可以从平均数量之间的关系中获得周期性结构的整体本构关系。

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