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Monte Carlo simulation of light scattering from magnetic fluids as a function of the particle chain width

机译:磁性流体的光散射与粒子链宽度的函数的蒙特卡洛模拟

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Light scattering from a magnetic fluid in a strong magnetic field is simulated in this article on the basis of the Monte Carlo method, where the scattering effects of the anisotropic chains formed under the influence of the magnetic field play the most important role in scattering the incident light. The distribution of the widths of the chains is believed to follow a normal distribution pattern in a given area [W/sub min/, W/sub max/] where (W/sub min/ and W/sub max/ are the minimum and maximum widths of the chains in the sample, respectively. The simulated curve is compared with that based on the experimental results obtained under the same conditions and the two agree well. The influences of both the expectation and the deviation of the distribution which the widths of the chains follow on light scattering are also simulated, respectively, and conclusions are drawn.
机译:本文在蒙特卡洛方法的基础上模拟了强磁场中磁性流体的光散射,其中在磁场的影响下形成的各向异性链的散射效应在散射事件中起着最重要的作用。光。据信,链的宽度分布在给定区域[W / sub min /,W / sub max /]中遵循正态分布模式,其中(W / sub min /和W / sub max /是最小值,在相同条件下获得的实验结果将模拟曲线与基于实验结果的模拟曲线进行比较,两者吻合得很好,预期和分布偏差对曲线的宽度的影响分别模拟了光散射所遵循的链,并得出了结论。

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