首页> 外文期刊>Antennas and Wireless Propagation Letters, IEEE >Analysis of Double-Negative (DNG) Bandwidths for Metamaterials Composed of Three-Dimensional Periodic Arrays of Two Different Magnetodielectric Spheres Arbitrarily Arranged on a Simple Tetragonal Lattice
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Analysis of Double-Negative (DNG) Bandwidths for Metamaterials Composed of Three-Dimensional Periodic Arrays of Two Different Magnetodielectric Spheres Arbitrarily Arranged on a Simple Tetragonal Lattice

机译:任意排列在简单四边形晶格上的两个不同磁电介质球的三维周期阵列组成的超材料的双负(DNG)带宽分析

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摘要

Based on the theory describing traveling waves on three-dimensional (3-D) periodic arrays of two sets of magnetodielectric spheres arbitrarily arranged on a simple tetragonal lattice, dispersion diagrams of seven different arrangements of the spheres are analyzed for three combinations of sphere types: I) dielectric spheres with equal permittivity but different radius; II) dielectric spheres with equal radius but different permittivity; and III) one set of spheres is purely dielectric while the other set is magnetic. Results show that the maximum bandwidths of the DNG region provided by different spheres arrangements for spheres combinations I-III are, respectively, 0.21%, 0.069%, and 7.403%. Compared to results reported in previous literature, analysis of these possible arrangements of the spheres shows similar narrow double-negative (DNG) bandwidths for spheres combinations I and II, and wider DNG bandwidths for spheres combination III. Although purely dielectric materials with relative permittivity much greater than one are readily available, the usefulness of purely dielectric DNG metamaterials still depends on whether the narrow bandwidths achievable are acceptable for the particular applications. Since purely magnetic materials with relative permeability much greater than one above 1 GHz are not currently available, the practicality of fabricating DNG metamaterials using arrays with spheres combination III is questionable for radio frequency (RF) applications, at least at present, despite the fact that this combination yields much wider DNG bandwidths than those of spheres combinations I and II.
机译:基于在任意四边形格子上任意布置的两组磁电介质球的三维(3-D)周期阵列上描述行波的理论,针对球体类型的三种组合,分析了球体的七个不同排列的色散图: I)介电常数相等但半径不同的介电球; II)半径相等但介电常数不同的介电球; III)一组球是纯介电的,而另一组球是磁性的。结果表明,对于球体组合I-III,由不同球体布置提供的DNG区域的最大带宽分别为0.21%,0.069%和7.403%。与以前文献中报道的结果相比,对这些可能的球体布置的分析显示,对于球体组合I和II,相似的窄双负(DNG)带宽,对于球体组合III具有更宽的DNG带宽。尽管相对介电常数比一种大得多的纯介电材料是容易获得的,但是纯介电DNG超材料的实用性仍然取决于特定应用是否可以接受窄带宽。由于目前尚无法获得相对磁导率大于1 GHz以上的纯磁材料,因此至少在目前,至少对于射频(RF)应用而言,使用具有球体组合III的阵列制造DNG超材料的实用性值得怀疑。这种组合产生的DNG带宽比球体组合I和II的宽得多。

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