倍半氧化物
光学
材料科学
二极管
激光器
光电子学
瓦特
兴奋剂
物理
功率(物理)
量子力学
冶金
作者
Weiwei Ma,Xiaoxu Yu,Jiajia Wang,Shihui Ma,Zhongben Pan,Fei Liang,Dazhi Lu,Dechun Li,Zhanggui Hu
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2025-07-21
卷期号:33 (15): 32918-32918
摘要
Tm 3+ -doped sesquioxide crystals represent promising gain media for 2.3 µm lasers owing to their low phonon energy and high thermal conductivity. However, the difficulty in obtaining high-quality crystals and the underdeveloped analysis of energy-transfer upconversion (ETU) processes significantly limit their application in the field of 2.3 µm lasers. To address the crystal quality challenge, we successfully grew Tm:Lu 2 O 3 and Tm:LuYO 3 crystals with dimensions of Φ6 × 20-30 mm using the laser floating zone (LFZ) method. Subsequently, we investigated their laser performance at 2.3 µm. Under 793 nm wavelength-locked laser diode (LD) pumping and based on the 3 H 4 → 3 H 5 transition, continuous-wave (CW) 2.3 µm laser operation was demonstrated. The Tm:Lu 2 O 3 crystal achieved a maximum output power of 1.1 W with a slope efficiency of 21.7%, while the Tm:LuYO 3 crystal yielded 1.0 W with a slope efficiency of 21%. To the best of our knowledge, these results represent the highest output powers achieved to date from sesquioxide crystals under LD pumping at 2.3 µm and also proves the potential for application in the 2.3 µm band.
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