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反常衍射
    Application on Circular Cyitinder Particle Size Distribution Based on Anomalous Diffraction Approximation
    反常衍射近似在测量圆柱形粒子粒径分布中的应用
    This paper introduces another method of anomalous diffraction approximation to analyze the light scattering of static and deformed red blood cells according to the size and comparative refractive index.
    因此,论文根据红细胞的尺寸参数和相对折射率采用另一种理论——反常衍射理论分析静态和变形红细胞的光散射。
    The simulation result shows that it is more suitable to analyze biological cells by anomalous diffraction as their compared refractive index close to unity.
    仿真中采用两种不同的理论进行分析,仿真结果表明,当生物细胞(红细胞)与周围介质的相对折射率接近于1时,适合用反常衍射理论进行分析。
    The last part of paper analyzed and compared the experiment data with simulation data, and proved that the correctness and applicability of the simulation method and anomalous diffraction theory.
    论文最后进行了实验数据分析,将实验数据与仿真结果进行比较,进一步证实了仿真方法和反常衍射理论的适用性、正确性。
    In this paper, by numerical calculation based on Mie scattering and anomalous diffraction theories, we compared and analysed the Mie scattering and anomalous diffraction of spheres with refractue index near 1 in detail, and present a criterion of spheres with refractive index near 1 when anomalous diffraction theory can be used to replace Mie scattering theory.
    利用Mie散射与反常衍射理论的数值计算,对球形颗粒Mie散射和反常衍射作了大量详细的计算和分析比较,提出了相对折射率趋近于1的颗粒的反常衍射近似替代Mie散射的判据。
    Parameter fitting between anomalous diffraction approach (ADA) theory and experimental data is applied to analyze scattering properties, which related with droplet size, refractive index of polymer in polymer dispersed liquid crystal (PDLC).
    用反常衍射(ADA)理论与实验数据优化拟合方法分析了聚合物分散液晶(PDLC)微滴在633nm激光照射下的散射特性与微滴尺寸、聚合物折射率的关系。
    Using the anomalous diffraction approximation(ADA)instead of Mie extinction efficiency can simplify the inversion of particle size distribution.
    通过反常衍射近似(ADA)代替米消光系数,可以简化粒径分布的反演过程。
    Simulation experiments illustrate that it is feasible to use the anomalous diffraction approximation to inverse the circular cylinder particle size distribution in the total light scattering technique,and the inversion results are steady and reliable.
    仿真结果表明,当粒子的相对折射率在一定范围内时,利用反常衍射近似反演圆柱形粒子的粒径分布是完全可行的,反演结果稳定、可靠。
 

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