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首页> 外文期刊>Applied optics >Particle size and refractive index retrieval from the backscattering spectrum of white light using the Twomey iterative method: simulation and experiment
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Particle size and refractive index retrieval from the backscattering spectrum of white light using the Twomey iterative method: simulation and experiment

机译:使用Twomey迭代方法从白光的反向散射光谱中检索粒径和折射率:模拟和实验

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摘要

The Twomey iterative method has been applied to the retrieval of hydrosol microphysical properties. In particular, we focused on the retrieval of single and multimode particle size distributions from both simulated and experimental backscattering spectra in the 400-800 nm wavelength range. Assuming a known refractive index, both single-mode and multimode distributions were successfully retrieved through the introduction of an initial distribution biased toward larger particles. The simulation results were experimentally verified with standard polystyrene particles suspended in water within the diameter range of 0.2-2 (mu)m for both narrow and broad monomodal distributions as well as more complicated multimode distributions. Finally, the technique was extended to the retrieval of an unknown refractive index.
机译:Twomey迭代方法已应用于水溶胶微物理性质的检索。特别是,我们专注于从400-800 nm波长范围内的模拟和实验反向散射光谱中检索单模和多模粒度分布。假设折射率已知,则通过引入偏向较大颗粒的初始分布可以成功地恢复单模和多模分布。对于狭窄和较宽的单峰分布以及更复杂的多峰分布,使用悬浮在直径范围为0.2-2μm的水中的标准聚苯乙烯颗粒通过实验验证了模拟结果。最终,该技术扩展到了未知折射率的获取。

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