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Dielectric Function for Gold in Plasmonics Applications: Size Dependence of Plasmon Resonance Frequencies and Damping Rates for Nanospheres

机译:等离子体技术中金的介电功能:等离子体球共振频率的大小依赖性和纳米球的阻尼速率

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摘要

Realistic representation of the frequency dependence of dielectric function of noble metals has a significant impact on the accuracy of description of their optical properties and farther applications in plasmonics, nanoscience, and nanotechnology. Drude-type models successfully used in describing material properties of silver, for gold are known to be not perfect above the threshold energy at 1.8 eV. We give the improved, simple dielectric function for gold which accounts for the frequency dependence of the interband transitions over 1.8 eV and, in addition, for the finite size effects in gold nanoparticles. On that basis, we provide the improved characterization of the spectral performance of gold nanoparticles. Furthermore, we give the direct size dependence of the resonance frequencies and total damping rates of localized surface plasmons of gold nanoparticles (retardation effects are taken into full account) in diverse dielectric environments. The results are compared to the data obtained experimentally for gold monodisperse colloidal nanospheres, as well with the experimental results of other authors.
机译:贵金属介电函数频率依赖性的真实表示,对描述其光学性质的准确性以及在等离子,纳米科学和纳米技术中的进一步应用产生了重大影响。成功地用于描述银的材料特性的Drude型模型对于金在1.8 eV的阈值能量以上并不完美。我们给出了改进的,简单的金介电函数,该函数解释了1.8 eV以上的带间跃迁对频率的依赖性,此外,还解释了金纳米粒子的有限尺寸效应。在此基础上,我们提供了金纳米颗粒光谱性能的改进表征。此外,我们给出了在各种介电环境中金纳米颗粒的局部表面等离子体激元的共振频率和总阻尼率的直接大小依赖性(充分考虑了延迟效应)。将结果与金单分散胶体纳米球的实验数据进行比较,并与其他作者的实验结果进行比较。

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