材料科学
陶瓷
兴奋剂
激光器
镱
热等静压
透明陶瓷
制作
边坡效率
温度梯度
烧结
二极管
光学
光电子学
复合材料
光纤激光器
波长
物理
病理
医学
替代医学
量子力学
作者
Feng Tian,Nan Jiang,Yang Liu,Hao‐Hong Chen,Ting Xie,Dariusz Hreniak,Jiang Li
摘要
Abstract In order to fully pump and smoothen the temperature gradient of the gain medium, multistage gradient doping Yb:YAG laser ceramics were designed. The composite green bodies were fabricated by tape casting, and multistage gradient doping Yb:YAG ceramics with high optical quality were prepared by vacuum sintering and hot isostatic pressing. For samples pre‐sintered at 1740°C for 30 h and then HIP‐ed at 1700°C for 3 h in argon at 200 MPa, the in‐line transmission values at 1100 nm of YAG, 0.6 at.%Yb:YAG, and 1.5 at.%Yb:YAG ceramics were found to be 83.9%, 84.1%, and 83.3%, respectively. Finally, the 940 nm laser diode was used as the pump source to realize the 1030 nm laser output of multistage gradient doping Yb:YAG ceramic slab with a total energy of 3.43 J. The corresponding optical‐to‐optical conversion and slope efficiencies were 30% and 45%.
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