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Broadband mean free path of diffuse light in polydisperse ensembles of scatterers for white light-emitting diode lighting

机译:白色发光二极管照明的散射体多分散体中的散射光的宽带平均自由程

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摘要

We study the diffuse transport of light through polymer slabs containing TiO_2 scattering particles. The slabs are diffuser plates typical of a commercial white light-emitting diode (LED) module (Fortimo). We have measured the diffuse transmission and reflection properties over a broad wavelength range (470-840 nm) from which we derive the transport mean free path using the theory of light diffusion. With increasing scatterer density, the mean free path becomes shorter. The mean free path increases with wavelength; hence, blue light is scattered more strongly than red light. To interpret the results, we propose an ab initio model without adjustable parameters for the mean free path by using Mie theory. We include inhomogeneous broadening as a result of the size distribution of the scattering particles as measured by dynamic light scattering. Surprisingly, the calculated mean free path decreases with wavelength, at variance with our experiments, which is caused by particles with radii R in excess of 0.25 μm. Close inspection of the scatterers by electron microscopy reveals that large particles (R > 0.4 μm) consist of clusters of small particles (R < 0.13 μm). Therefore, we have improved our model by only taking into account the individual scatterers within the clusters. This model predicts mean free paths in good agreement with our experimental results. We discuss consequences of our results to white LED lighting modules.
机译:我们研究了光通过包含TiO_2散射颗粒的聚合物平板的扩散传输。这些平板是商用白色发光二极管(LED)模块(Fortimo)的典型扩散板。我们已经测量了在很宽的波长范围(470-840 nm)内的漫透射和反射特性,从中我们可以使用光扩散理论推导传输平均自由程。随着散射体密度的增加,平均自由程变短。平均自由程随波长增加。因此,蓝光比红光散射更强烈。为了解释结果,我们使用米氏理论提出了一个没有可调整参数的从头算模型,用于平均自由程。由于通过动态光散射测得的散射粒子的尺寸分布,我们包括了不均匀加宽。出乎意料的是,计算出的平均自由程随波长而减小,与我们的实验不同,这是由半径R超过0.25μm的粒子引起的。通过电子显微镜仔细检查散射体,发现大颗粒(R> 0.4μm)由小颗粒簇(R <0.13μm)组成。因此,我们仅考虑了群集中的各个散射体,从而改进了模型。该模型预测平均自由程与我们的实验结果高度吻合。我们讨论了结果对白色LED照明模块的影响。

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