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Monte Carlo Simulation of Optical Properties of Phosphor-Screened Ultraviolet Light in a White Light-Emitting Device

机译:白光发射装置中磷光屏蔽紫外光的光学特性的蒙特卡洛模拟

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摘要

In this paper, we study the optical properties of phosphor-screened ultraviolet light emitted by a quantum well through a chamber. The chamber contains randomly distributed red, blue and green phosphors, and is top-covered with a layer of omnidirectional photonic bandgap material. A Monte Carlo ray tracing method is developed to model the absorption, reflection and transmission for the excited radiation of the ultraviolet light as well as the visible light by the individual phosphor particles. The efficiency of emitting white light by synthesizing the visible light through the top substrate is investigated with respect to the weight ratio, the size of phosphor particles, the dimension of the chamber and the reflectivity of the side wall and the bottom substrate.
机译:在本文中,我们研究了量子阱通过腔室发射的荧光粉筛选的紫外光的光学特性。该腔室包含随机分布的红色,蓝色和绿色磷光体,并在其顶部覆盖有一层全向光子带隙材料。开发了蒙特卡洛射线追踪方法,以模拟单个磷光体颗粒对紫外光以及可见光的激发辐射的吸收,反射和透射。关于重量比,荧光粉颗粒的尺寸,腔室的尺寸以及侧壁和底部基板的反射率,研究了通过顶部基板合成可见光而发出白光的效率。

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