Investigation of Excitation Modes in Al2O3-YAG Phosphor Ceramics for High-Power Laser-Driven Lighting

Zetao Shen, Qiang‐Qiang Zhu, Rundong Tian, Guimin Guo, Rongjun Xie, Le Wang
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Abstract

The performance of laser-driven white light can vary significantly depending on the excitation mode. To attain desirable application performance of color converters in laser lighting, the excitation mode must be selected carefully. In this work, to understand the effect of the excitation mode on the performance of color converters, a detailed study was conducted on the heat dispersion, luminescence, and color quality of Al2O3-YAG:Ce phosphor ceramics in both transmissive and reflective modes. The relationship between ceramic porosity and scattering performance has also been analyzed by studying the beam expansion ratio. The results demonstrate that the phosphor ceramics in reflective mode exhibit superior heat dissipation capabilities and can withstand higher power laser excitation compared to the transmissive mode, while the light uniformity is relatively poorer due to the specular reflection. Therefore, in situations where a uniform light is not necessary, reflective color converters are more suitable for achieving superior luminance and luminous efficacy. Finally, a laser-driven white light device with a luminous flux of 1206 lm, a luminous efficacy of 241.2 lm/W, and a CCT of 5749 K has been realized using Al2O3-YAG:Ce phosphor ceramic in reflective mode, which can be applied for automotive headlights.
用于大功率激光驱动照明的 Al2O3-YAG 磷陶瓷中的激发模式研究
激光驱动白光的性能会因激发模式的不同而有很大差异。为了使激光照明中的色彩转换器达到理想的应用性能,必须谨慎选择激励模式。在这项工作中,为了了解激发模式对色彩转换器性能的影响,对 Al2O3-YAG:Ce 磷光陶瓷在透射和反射模式下的热扩散、发光和色彩质量进行了详细研究。此外,还通过研究光束膨胀比分析了陶瓷孔隙率与散射性能之间的关系。结果表明,与透射模式相比,反射模式下的荧光粉陶瓷具有更强的散热能力,能承受更高功率的激光激发,但由于镜面反射,光的均匀性相对较差。因此,在不需要均匀光的情况下,反射式色彩转换器更适合实现出色的亮度和光效。最后,在反射模式下使用 Al2O3-YAG:Ce 磷陶瓷实现了光通量为 1206 lm、光效为 241.2 lm/W、CCT 为 5749 K 的激光驱动白光装置,该装置可用于汽车前大灯。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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