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Negative effective permeability in metal cluster photonic crystal

机译:金属团簇光子晶体中的负有效磁导率

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We report a new metamateriall design made of a periodic array of metal nanowire clusters. For transverse-electric polarization, the metal nanowire supports an electric-dipole-like Mie resonance. When the nanowires are arranged into a regular array with sufficiently small spacing, the array exhibits a resonant behavior in effective permittivity. Furthermore, when the nanowires are arranged into a finite size cluster, they can support a magnetic Mie resonance in which magnetic field is strongly localized inside the cluster. Array of such clusters with sufficiently small spacing can then exhibit a resonant behavior in effective permeability. When the magnetic resonance is strong enough, permeability can become negative. The mechanism of producing negative permeability is similar to the ferroelectric and polaritonic photonic crystals but the metal cluster photonic crystal can exhibit stronger magnetic activity at optical frequencies. The availability of extensive synthesis and fabrication techniques for metal nanostructures makes the metal cluster photonic crystal a promising metamaterial platform for optical frequency operation. (C) 2008 Elsevier Ltd. All rights reserved.
机译:我们报道了一种新的超材料设计,该设计由金属纳米线簇的周期性阵列组成。对于横向电极化,金属纳米线支持类似电偶极子的米氏共振。当纳米线排列成具有足够小间距的规则阵列时,阵列在有效介电常数下表现出共振行为。此外,当纳米线排列成有限尺寸的团簇时,它们可以支持磁米氏共振,其中磁场强烈地局限于团簇内。具有足够小间距的此类团簇阵列可以在有效磁导率中表现出共振行为。当磁共振足够强时,磁导率会变为负值。产生负磁导率的机理与铁电和极化光子晶体相似,但金属团簇光子晶体在光频率下可以表现出更强的磁活性。金属纳米结构的广泛合成和制造技术的可用性使金属团簇光子晶体成为光频率操作的有前途的超材料平台。(C) 2008 爱思唯尔有限公司保留所有权利。

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