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首页> 外文期刊>Physica, B. Condensed Matter >Effective material parameter retrieval for thin sheets: Theory and application to graphene, thin silver films, and single-layer metamaterials
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Effective material parameter retrieval for thin sheets: Theory and application to graphene, thin silver films, and single-layer metamaterials

机译:薄板的有效材料参数检索:石墨烯,银薄膜和单层超材料的理论和应用

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摘要

An important tool in the field of metamaterials is the extraction of effective material parameters from simulated or measured scattering parameters of a sample. Here we discuss a retrieval method for thin-film structures that can be approximated by a two-dimensional scattering sheet. We determine the effective sheet conductivity from the scattering parameters and we point out the importance of the magnetic sheet current to avoid an overdetermined inversion problem. Subsequently, we present two applications of the sheet retrieval method. First, we determine the effective sheet conductivity of thin silver films and we compare the resulting conductivities with the sheet conductivity of graphene. Second, we apply the method to a cut-wire metamaterial with an electric dipole resonance. The method is valid for thin-film structures such as two-dimensional metamaterials and frequency-selective surfaces and can be easily generalized for anisotropic or chiral media.
机译:超材料领域的重要工具是从样品的模拟或测量散射参数中提取有效材料参数。在这里,我们讨论了一种可以通过二维散射片近似的薄膜结构的检索方法。我们根据散射参数确定有效的薄板电导率,并指出了薄板电流对于避免过度确定的反演问题的重要性。随后,我们介绍了工作表检索方法的两个应用。首先,我们确定银薄膜的有效薄层电导率,然后将所得的电导率与石墨烯的薄层电导率进行比较。其次,我们将该方法应用于具有电偶极子共振的切割线超材料。该方法对于诸如二维超材料和频率选择表面之类的薄膜结构是有效的,并且可以容易地推广到各向异性或手性介质。

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