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Particle agglomeration study in rf silane plasmas: In situ study by polarization-sensitive laser light scattering

机译:射频硅烷等离子体中的粒子团聚研究:偏振敏感激光散射的原位研究

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摘要

To determine self‐consistently the time evolution of particle size and their number density in situ multi‐angle polarization‐sensitive laser light scattering was used. Cross‐polarization intensities (incident and scattered light intensities with opposite polarization) measured at 135° and ex situ transmission electronic microscopy analysis demonstrate the existence of nonspherical agglomerates during the early phase of agglomeration. Later in the particle time development both techniques reveal spherical particles again. The presence of strong cross‐polarization intensities is accompanied by low‐frequency instabilities detected on the scattered light intensities and plasma emission. It is found that the particle radius and particle number density during the agglomeration phase can be well described by the Brownian free molecule coagulation model. Application of this neutral particle coagulation model is justified by calculation of the particle charge whereby it is shown that particles of a few tens of nanometer can be considered as neutral under our experimental conditions. The measured particle dispersion can be well described by a Brownian free molecule coagulation model including a log‐normal particle size distribution.
机译:为了自洽地确定粒度的时间演变及其原位多角度偏振敏感激光散射的数量密度。在135°测得的交叉极化强度(入射光和散射光的强度为相反的偏振)和异位透射电子显微镜分析表明,在团聚的早期存在非球形团聚体。在粒子时间发展的后期,两种技术都再次显示出球形粒子。强烈的交叉极化强度伴随着散射光强度和等离子体发射中检测到的低频不稳定性。发现在凝聚阶段的粒子半径和粒子数密度可以通过布朗自由分子凝聚模型很好地描述。通过计算粒子电荷可以证明该中性粒子凝聚模型的应用是正确的,由此表明,在我们的实验条件下,几十纳米的粒子可以被视为中性粒子。测得的颗粒分散度可以通过包括对数正态粒度分布的布朗自由分子凝聚模型很好地描述。

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