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Surface Plasmon Resonance in Small Gold Nanoparticles: Introducing a Size-Dependent Plasma Frequency for Nanoparticles in Quantum Regime

机译:小金纳米颗粒中的表面等离子体共振:在量子制度中引入纳米颗粒的尺寸依赖性等离子体频率

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摘要

Study of surface plasmon resonance for small nanoparticles (R<10 nm) has many theoretical complexities due to lack of a simple quantitative model for describing plasmonics in such quantum regime. Here, a modification of the Drude model has been proposed to account for quantum constrains of small nanoparticles. This modification leads to introducing a size-dependent plasma frequency with the functionality of 1/R added to the standard local dielectric function. The modified dielectric model has been used to calculate the plasmonic spectrums of gold nanoparticles in a wide range of sizes from 3.6 to 48.3nm. By comparing the calculated results with various experimental data, the modified dielectric function in comparison with other models can better describe the plasmonic peak of gold nanoparticles especially for the sizes smaller than 10.0nm.
机译:对小纳米颗粒的表面等离子体共振(R <10nm)的研究具有许多理论复杂性,因为缺乏用于在这种量子制度中描述血浆的简单定量模型。 这里,已经提出了对博德模型的修改以考虑小纳米颗粒的量子约束。 该修改导致引入尺寸相关的等离子体频率,其功能为1 / R添加到标准局部介电函数。 改进的电介质模型已用于从3.6至48.3nm的宽范围内计算金纳米粒子的等离子体谱。 通过将计算结果与各种实验数据进行比较,与其他模型相比改进的电介质功能可以更好地描述金纳米颗粒的等离子体峰值,特别是对于小于10.0nm的尺寸。

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