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银纳米颗粒阵列的高度各向异性有效介电函数。

Highly anisotropic effective dielectric functions of silver nanoparticle arrays.

作者信息

Oates Thomas W H, Ranjan Mukesh, Facsko Stefan, Arwin Hans

机构信息

Leibniz-Institut für Analytische Wissenschaften - ISAS-Berlin, Albert-Einstein-Str 9, 12489 Berlin, Germany.

出版信息

Opt Express. 2011 Jan 31;19(3):2014-28. doi: 10.1364/OE.19.002014.

Abstract

Variable-angle and Mueller matrix spectroscopic ellipsometry are used to determine the effective dielectric tensors of random and aligned silver nanoparticles and nanorods thin films. Randomly arranged particles are uniaxially anisotropic while aligned particles are biaxially anisotropic, with the anisotropy predominantly at the plasmonic resonances. The strong resonances in nanorod arrays result in the real part of the effective in-plane permittivities being opposite in sign over a significant range in the visible, suggesting the potential to design materials that display tunable negative-refraction. A structural tilt in the particle arrays results in monoclinic dielectric properties.

摘要

可变角度和穆勒矩阵光谱椭圆偏振法用于确定随机排列和排列有序的银纳米颗粒及纳米棒薄膜的有效介电张量。随机排列的颗粒是单轴各向异性的,而排列有序的颗粒是双轴各向异性的,各向异性主要出现在等离子体共振处。纳米棒阵列中的强共振导致有效面内介电常数的实部在可见光的很大范围内符号相反,这表明有潜力设计出具有可调谐负折射特性的材料。颗粒阵列中的结构倾斜会导致单斜晶系介电特性。

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