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Method for modeling radiative transport in luminescent particulate media

机译:发光颗粒介质中辐射传输模型的方法

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Modeling radiative transport in luminescent particulate media is important to a variety of applications, from biomedical imaging to solar power harvesting. When absorption and scattering from individual particles must be considered, the description of radiative transport is not straightforward. For large particles and interparticle spacing, geometrical optics can be employed. However, this approach requires accurate knowledge of several particle properties, such as index of refraction and absorption coefficient, along with particle geometry and positioning. Because the determination of these variables is often nontrivial, we developed an approach for modeling radiative transport in such media, which combines two simple experiments with Monte Carlo simulations to determine the particle extinction coefficient (Gamma) and the probability of absorption of light by a particle (P-A). The method is validated on samples consisting of luminescent phosphor powder dispersed in a silicone matrix. (C) 2016 Optical Society of America
机译:从生物医学成像到太阳能采集,对发光颗粒介质中的辐射传输进行建模对于各种应用都很重要。当必须考虑单个颗粒的吸收和散射时,对辐射传输的描述并不简单。对于较大的粒子和粒子间的间距,可以使用几何光学。但是,此方法需要准确了解几种粒子特性,例如折射率和吸收系数,以及粒子的几何形状和位置。由于确定这些变量通常并非易事,因此我们开发了一种对此类介质中的辐射传输进行建模的方法,该方法将两个简单的实验与蒙特卡洛模拟相结合,以确定粒子的消光系数(Gamma)和粒子吸收光的概率(PA)。该方法在由分散在硅树脂基质中的发光磷光体粉末组成的样品上得到验证。 (C)2016美国眼镜学会

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