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Evolution of plasmon resonances during plasma deposition of silver nanoparticles

机译:银纳米粒子等离子体沉积过程中等离子体激元共振的演变

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摘要

In situ real-time spectroscopic ellipsometry is used to monitor the growth of magnetron sputtered silver nanoparticles on SiO_2 substrates, through the percolation threshold and into the bulk film regime. The plasmon polariton resonances in the nanoparticulate regime are effectively modelled by a Lorentz oscillator. The resonance energy of the oscillator is observed to reduce to zero shortly after the percolation threshold, whereby the oscillation is described by Drude free electron theory. From the Drude theory, the electronic mean free path is observed to increase dramatically at the percolation threshold, to a value of 16 nm in the bulk regime, in good agreement with x-ray diffraction and transmission electron microscope measurements of the crystallite size in the films. Shortly before the percolation threshold the data is better modelled by two Lorentz oscillators, attributed to coupling between the plasmon polaritons. The onset of the coupling is determined to occur at a surface area coverage of 52 percent.
机译:原位实时光谱椭圆偏振法用于监测磁控溅射银纳米颗粒在SiO_2衬底上的渗透阈值,并进入体膜状态。洛伦兹振荡器有效地模拟了纳米颗粒状态下的等离子体激元共振。在渗滤阈值之后不久,观察到振荡器的共振能量减小到零,从而由德鲁德自由电子理论描述了该振动。根据德鲁德理论,观察到电子平均自由程在渗滤阈值处急剧增加,在体态下达到16 nm,这与x射线衍射和透射电子显微镜对晶体中晶粒尺寸的测量结果非常吻合。电影。在渗透阈之前不久,两个等离子振子之间的耦合可以更好地通过两个洛伦兹振荡器对数据进行建模。确定发生在表面覆盖率为52%时发生耦合。

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