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Limited possibility for quantifying mean particle size by logarithmic light-scattering spectroscopy

机译:通过对数光散射光谱法定量平均粒径的可能性有限

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Recent studies have shown that the slope of logarithmic scattering spectroscopy of a turbid medium is related to the sizes of the scattering particles within the turbid medium. Mie theory can be used to generate a logarithmic plot of the reduced-scattering coefficient versus wavelength. According to Nilsson et al. [Appl. Opt. 37, 1256 (1998)], the slope value of a linear fit of the logarithmic scattering spectroscopy between 600 and 1050 nm can be used for direct determination of particle size. We performed similar calculations using the Rayleigh-Gans approximation and obtained an analogous overall shape with additional sinusoidal features. Our calculations indicate a possible relationship between the slope and the particle size when the size is used to calculate the slope, namely, in the forward calculation. However, because of the sinusoidal pattern, the inverse calculation to obtain the particle size from the slope may be applied only for particles with a radius of <0.13 mum in combination with 650-1050-nm light. Caution should be exercised when inverse calculation is performed to determine the scattering particle sizes in the range of radii >0.13 mum, with the slope of logarithmic scattering spectroscopy within 650-1050 nm. (C) 2003 Optical Society of America. [References: 10]
机译:最近的研究表明,混浊介质的对数散射光谱的斜率与混浊介质中散射颗粒的大小有关。米氏理论可用于生成散射系数随波长变化的对数图。根据尼尔森等。 [应用选择。 37,1256(1998)],对数散射光谱的线性拟合的斜率值在600和1050nm之间可用于直接确定粒径。我们使用Rayleigh-Gans近似进行了类似的计算,并获得了具有其他正弦曲线特征的相似总体形状。我们的计算表明,当使用粒度计算斜率时,即在正向计算中,斜率与粒度之间可能存在关系。但是,由于是正弦曲线,因此从斜率获得粒度的逆计算可能仅适用于半径<0.13微米且结合650-1050-nm光的粒子。当进行反计算来确定半径>0.13μm的范围内的散射粒径时,应谨慎行事,对数散射光谱的斜率在650-1050 nm之间。 (C)2003年美国眼镜学会。 [参考:10]

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