荧光粉
材料科学
光学
发光效率
陶瓷
激光器
光通量
功率密度
光电子学
量子效率
发光
复合材料
光源
物理
图层(电子)
功率(物理)
量子力学
作者
Xu Chen,Mingyuan Liu,Chunming Zhou,Hang Chen,Tianyuan Zhou,Yanbin Li,Sheng-Hui Lin,Cong Wei,Cen Shao,Guannan Chen,Jian Kang,Pengde Han,W. Stręk,Hao Chen,Le Zhang
出处
期刊:Optics Express
[The Optical Society]
日期:2023-12-18
卷期号:32 (2): 1465-1465
被引量:6
摘要
High power and high brightness laser lighting puts forward new requirements for phosphor converters such as high luminous efficiency, high thermal conductivity and high saturation threshold due to the severe thermal effect. The structure design of phosphor converters is proposed as what we believe to be a novel strategy for less heat production and more heat conduction. In this work, the rod-shaped YAG:Ce phosphor ceramics (PCs) and disc-shaped YAG:Ce PCs as control group were fabricated by the gel casting and vacuum sintering, to comparatively study the luminescence performance for LD lighting, on the premise that the total number of transverse Ce 3+ ions and the volume of samples from two comparison groups were same. All rod YAG:Ce PCs with low Ce 3+ concentration exhibited the high luminous efficiency and better thermal stability than YAG:Ce discs with high Ce 3+ concentration. Under the laser power density of 47.8 W/mm 2 , the luminous saturation was never observed in all rod-shaped YAG:Ce PCs. The high luminous efficacy of 245∼274 lm/W, CRI of 56.3∼59.5 and CCT of 4509∼4478 K were achieved. More importantly, due to the extremely low Ce 3+ doping concentration (0.01 at%), rod-shaped ceramics based LDs devices showed the excellent thermal performance and their surface temperatures were even below 30.5 °C surprisingly under the laser power density of 20.3 W·mm -2 (2 W). These results indicate that the rod shape of phosphor converter is a promising structure engineering for high power laser lighting.
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