材料科学
散热片
光学
光电子学
激光器
激光束
垂直腔面发射激光器
激光二极管
半导体激光器理论
激光功率缩放
折射率
可调谐激光吸收光谱技术
二极管
分布反馈激光器
光无线
光纤激光器
材料加工
物理气相沉积
激光超声
可调谐激光器
X射线激光器
功率(物理)
传输(电信)
光功率
作者
Danni Li,Linhui Guo,Hao Tan,Guiqi Zhong,Jingyi Wang,Tao Li,Huicheng Meng,Yun Fu,Zhen Wu,ZHEQIANG ZHONG,Deyong Wu,Songxin Gao
出处
期刊:Optics Letters
[Optica Publishing Group]
日期:2026-03-03
卷期号:51 (6): 1638-1638
摘要
As the output power of laser diodes increases, the resulting thermal load leads to elevated chip temperatures and reduced electro-optical conversion efficiency. To address this challenge, we design a stepped-structure heat sink integrated with multi-channel water cooling in which 15 laser diode chips are arranged in a stepped configuration to achieve efficient thermal management. Experimental results show that the output power of a stepped heat-sink module increases with driving current, accompanied by a center-wavelength redshift of 3.82 nm. The module delivers 138.5 W with a peak electro-optical conversion efficiency of 65.07%, while the maximum device temperature is maintained at approximately 28.6°C under steady-state operation at 8 A. Furthermore, 4 such modules are spectrally beam-combined along the fast axis and coupled into a 200 μm/0.22 NA optical fiber, achieving 422.6 W continuous output power with a maximum efficiency of 59.43% at 6.91 A. These results demonstrate an effective thermal management solution for high-power laser wireless power transmission.
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