基于圆柱螺旋元的手性超材料数学模型的建立,考虑了元的分散和浓度

I. Buchnev, D. S. Klyuev, Yuliya S. Mamoshina, O. Osipov, D. Panin
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引用次数: 0

摘要

背景。研究微波超材料的兴趣在于利用它们实现与电磁辐射相互作用所需的频率和极化选择特性的可能性,这是基于均匀介质的结构所无法获得的。的目标。基于均匀各向同性容器中任意取向导电细线圆柱螺旋的周期矩阵,建立了手性超材料的数学模型。与已知的模型不同,它考虑了有效介电常数和相对手性参数与螺旋浓度的显式关系。方法。基于麦克斯韦加内特公式的手性超材料的非均质性,使得从容器的渗透率和导电镜像不对称包体所占据的区域确定有效介电常数成为可能,在建立数学模型时考虑了这一点。考虑了二次洛伦兹公式中介电常数的色散和基于Condon模型的手性参数的色散。结果。得到了考虑螺旋浓度及其几何参数的有效介电常数和手性参数随频率变化的解析表达式。得到了夹杂物无因次体积浓度与相邻元素间距离的关系式。采用准静态方法计算了导电细丝圆柱螺旋的谐振频率。结论。该方法可应用于基于任意镜像不对称空间构型的导电元素周期矩阵的手性超材料的数学模型构建。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a mathematical model of a chiral metamaterial based on a cylindrical helical elements accounting for the dispersion and concentration of elements
Background. Interest in the study of microwave metamaterials is associated with the possibility of using them to achieve the required frequency and polarization selective properties of interaction with electromagnetic radiation, which can’t be obtained for structures based on homogeneous media. Aim. The mathematical model of a chiral metamaterial based on a periodic matrix of arbitrarily oriented conducting thin-wire cylindrical helices located in a homogeneous isotropic container creation is considered. Unlike known models, it takes into account the explicit form of the dependence of the effective permittivity and the relative chirality parameter on the helices concentration. Methods. The heterogeneity of a chiral metamaterial based on the Maxwell Garnett formula, which makes it possible to determine the effective dielectric permittivity from the permeabilities of the container and the region occupied by conducting mirror asymmetric inclusions is taken into account when creating a mathematical model. The dispersion of permittivity using the quadratic Lorentz formula and the dispersion of the chirality parameter based on the Condon model are taken into account. Results. Analytical frequency-dependent expressions for the effective permittivity and the chirality parameter taking into account the concentration of helices and their geometric parameters, were obtained in the work. The expression for the relationship between the dimensionless volume concentration of inclusions and the distance between adjacent elements is obtained. The quasi-static approach is used to calculate the resonant frequency of conducting thin-wire cylindrical helices. Conclusion. The proposed method for constructing a mathematical model can be applied to chiral metamaterials based on periodic matrices of conductive elements of an arbitrary mirror asymmetric spatial configuration.
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