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首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Numerical simulation of the optical system and medium flow field suitable for particle separation using laser radiation pressure
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Numerical simulation of the optical system and medium flow field suitable for particle separation using laser radiation pressure

机译:适用于利用激光辐射压力分离颗粒的光学系统和介质流场的数值模拟

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摘要

From a viewpoint of increasing the throughput of particle separation using laser radiation pressure,the long-range movements of a micron-order particle in a weakly focused Gaussian beam are investigated using a three-dimensional analytical model of the particle movement.The concept of the 'separation area' is introduced as an indicator of the throughput.The effects of numerical aperture of (he focusing lens,laser power and the medium How velocity on the throughput are examined through the calculation of the separation area of a soda-lime glass micro-sphere moving in water.Then,the potential applications of this particle separation are discussed on the basis of the difference in the separation area for particles with various refractive indices.Results show that the optimum numerical aperture in a static medium is obtainable in a very narrow region above a critical value.Deterioration of particle throughput due to the flow of a medium is controlled by using a numerical aperture slightly larger than the critical value.A high-power laser is advantageous to increase the particle separation throughput.Furthermore,separation of transparent and non-transparent particles can be readily achieved under optimal conditions of the optical system and a medium flow-field,whereas separation of transparent particles requires a large difference in the refractive index and uniformity in site.
机译:从提高使用激光辐射压力进行粒子分离的通量的角度出发,使用粒子运动的三维分析模型研究了微米级粒子在弱聚焦高斯光束中的远距离运动。引入“分离面积”作为产量的指标。(聚焦透镜,激光功率和介质的数值孔径的影响)如何通过计算钠钙玻璃微粉的分离面积来检验速度对产量的影响球在水中运动。然后,根据不同折射率的粒子在分离区域上的差异,讨论了这种粒子分离的潜在应用。结果表明,在非常大的静态介质中可以获得最佳数值孔径临界值以上的狭窄区域。通过略微使用数值孔径来控制由于介质流动引起的颗粒通量下降大于临界值。高功率激光有利于增加颗粒分离的通量。此外,在光学系统和介质流场的最佳条件下,可以很容易地实现透明和不透明颗粒的分离。透明颗粒的制备要求折射率和位置均匀性差异很大。

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