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Photon correlation spectroscopy on flowing polydisperse fluid-particle systems: theory

机译:流动多分散流体-粒子系统上的光子相关光谱:理论

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We develop an analytical expression for the homodyne autocorrelation function of laser light scattered by a laminar flow of a polydisperse particle-fluid system. In contrast to the already existing literature on the development of autocorrelation functions, we explicitly begin with the effects of the finite linewidth of the light source, the spatial and temporal intensity averaging that is due to the detection process, the Brownian particle movement on the amplitudes of the scattered light waves as well as on the degree of resolution that we introduce in this paper, and a general system velocity v = (upsilon(x), upsilon(y), upsilon(z)). One main result is a new physical interpretation of the well-known, generally empirically introduced coherence factor. Quantities that are comparable to the well-known degree of coherence, coherence area, and number of coherence areas have also been obtained. Finally the investigations are simplified to an autocorrelation function that can be used for the analysis of fluid-particle systems in the low Knudsen number regime. It is shown that in this case particle size or size distribution, system velocity, and particle concentration can be obtained simultaneously. The developed autocorrelation function is related to frequently analyzed special cases and compared with expressions from the literature. (C) 1998 Optical Society of America. [References: 38]
机译:我们开发了由多分散粒子-流体系统的层流散射的激光的零差自相关函数的解析表达式。与已有的有关自相关函数发展的文献相反,我们明确地开始于光源的有限线宽,由于检测过程引起的空间和时间强度平均,布朗粒子在振幅上的运动的影响。散射光波的大小以及我们在本文中介绍的分辨率,以及一般系统速度v =(upsilon(x),upsilon(y),upsilon(z))。一个主要结果是对众所周知的,通常凭经验引入的相干因子进行了新的物理解释。还获得了与众所周知的相干度,相干区域和相干区域数量相当的数量。最后,将研究简化为一个自相关函数,该函数可用于分析低克努森数状态下的流体粒子系统。结果表明,在这种情况下,可以同时获得粒径或粒径分布,系统速度和粒径。发达的自相关函数与经常分析的特殊情况有关,并与文献中的表达式进行了比较。 (C)1998年美国眼镜学会。 [参考:38]

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