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Investigation of Saturation Effects in Ceramic Phosphors for Laser Lighting

机译:激光照明用陶瓷荧光粉的饱和效应研究

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摘要

We report observations of saturation effects in a Ce:LuAG and Eu-doped nitride ceramic phosphor for conversion of blue laser light for white light generation. The luminous flux from the phosphors material increases linearly with the input power until saturation effects limit the conversion. It is shown that the temperature of the phosphor layer influences the saturation power level and the conversion efficiency. It is also shown that the correlated color temperature (CCT), phosphor conversion efficiency and color rendering index (CRI) are dependent both on the incident power and spot size diameter of the illumination. A phosphor conversion efficiency up to 140.8 lm/W with CRI of 89.4 was achieved. The saturation in a ceramic phosphor, when illuminated by high intensity laser diodes, is estimated to play the main role in limiting the available luminance from laser-based lighting systems.
机译:我们报告了在Ce:LuAG和Eu掺杂的氮化物陶瓷磷光体中的饱和效应的观察结果,用于转换蓝色激光以产生白光。来自磷光体材料的光通量随输入功率线性增加,直到饱和效应限制了转换。示出了磷光体层的温度影响饱和功率水平和转换效率。还表明,相关色温(CCT),磷光体转换效率和显色指数(CRI)既取决于入射功率,也取决于照明的光斑尺寸直径。荧光粉转换效率高达140.8 lm / W,CRI为89.4。据估计,当陶瓷荧光粉被高强度激光二极管照射时,其饱和度在限制基于激光的照明系统的可用亮度方面起着主要作用。

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