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Light absorption by coated nano-sized carbonaceous particles

机译:涂层纳米碳质颗粒的光吸收

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The optical properties of strongly absorbing soot particles coated by transparent material are investigated experimentally and described by several modeling approaches. Soot is produced by spark discharge and passed through a Sinclair-La Mer generator where non-absorbing carnauba wax is condensed onto it to obtain internal soot-wax mixtures in a controlled way. Measurements of the extinction and volume scattering coefficient show an amplification of absorption by a factor of approximately 1.8. This behavior was described by different approaches of internally mixed materials for the modal diameters of the measured size distributions: concentric-sphere model, effective medium approximations and heterogeneous ellipsoids. The concentric-sphere model describes the absorption increase quantitatively; and hence, it is chosen to be applied to the entire particle population in the size distribution. The growth of the soot particles by condensing wax is described by a simplified growth model to estimate the different contributions of several soot particle diameters to the overall absorption cross-section.
机译:实验研究了被透明材料覆盖的强吸收烟灰颗粒的光学性质,并通过几种建模方法进行了描述。烟尘是通过火花放电产生的,并通过Sinclair-La Mer发生器,在此发生器上,将非吸收性巴西棕榈蜡冷凝在其上,从而以受控方式获得内部的烟灰混合物。消光和体积散射系数的测量结果表明吸收率增加了约1.8倍。这种行为是通过内部混合材料针对所测量尺寸分布的模态直径的不同方法来描述的:同心球模型,有效介质近似和非均质椭圆体。同心球模型定量描述了吸收增加;因此,选择将其应用于尺寸分布中的整个粒子群体。通过简化的生长模型描述了通过冷凝蜡而形成的烟灰颗粒生长,以估算几种烟灰粒径对整个吸收截面的不同贡献。

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