Operation of 808-nm laser diode pumping at elevated temperature is crucial to many applications. Reliable operation at high power is limited by high thermal load and low catastrophic optical mirror damage (COMD) thres...Operation of 808-nm laser diode pumping at elevated temperature is crucial to many applications. Reliable operation at high power is limited by high thermal load and low catastrophic optical mirror damage (COMD) threshold at elevated temperature range. We demonstrated high efficiency and high power operation at elevated temperature with high COMD power. These results were achieved through device design optimization such as growth conditions, doping profile, and materials composition of the quantum-well and other layers. Electrical-to-optical efficiency as high as 62% was obtained through lowered threshold current, lowered series resistance and increased slope efficiency. The performance of single broad-area laser diodes scales to that of high power single bars on water-cooled copper micro-channel heatsinks or conductively-cooled CS heatsinks. No reduction in bar performance or significant spectral broadening is seen when these micro-channel coolers are assembled into 6-bar and 18-bar CW stacks for the highest power levels.展开更多
利用节流的高压冷却介质在微蒸发腔内相变吸热,设计了一种用于大功率激光二极管制冷的封装组件。该组件采用高热导的无氧铜,用精密线切割、化学腐蚀等技术制作微蒸发腔,再通过自制的焊接设备完成制冷组件的封装。按照大功率激光二极管...利用节流的高压冷却介质在微蒸发腔内相变吸热,设计了一种用于大功率激光二极管制冷的封装组件。该组件采用高热导的无氧铜,用精密线切割、化学腐蚀等技术制作微蒸发腔,再通过自制的焊接设备完成制冷组件的封装。按照大功率激光二极管条的发热模型,理论上对微蒸发腔制冷组件的温度分布进行了数值模拟,结果与60 W激光二极管条的散热实验符合较好,得到制冷剂流量为23 m L/min时的热阻为0.289℃/W。展开更多
文摘Operation of 808-nm laser diode pumping at elevated temperature is crucial to many applications. Reliable operation at high power is limited by high thermal load and low catastrophic optical mirror damage (COMD) threshold at elevated temperature range. We demonstrated high efficiency and high power operation at elevated temperature with high COMD power. These results were achieved through device design optimization such as growth conditions, doping profile, and materials composition of the quantum-well and other layers. Electrical-to-optical efficiency as high as 62% was obtained through lowered threshold current, lowered series resistance and increased slope efficiency. The performance of single broad-area laser diodes scales to that of high power single bars on water-cooled copper micro-channel heatsinks or conductively-cooled CS heatsinks. No reduction in bar performance or significant spectral broadening is seen when these micro-channel coolers are assembled into 6-bar and 18-bar CW stacks for the highest power levels.
文摘利用节流的高压冷却介质在微蒸发腔内相变吸热,设计了一种用于大功率激光二极管制冷的封装组件。该组件采用高热导的无氧铜,用精密线切割、化学腐蚀等技术制作微蒸发腔,再通过自制的焊接设备完成制冷组件的封装。按照大功率激光二极管条的发热模型,理论上对微蒸发腔制冷组件的温度分布进行了数值模拟,结果与60 W激光二极管条的散热实验符合较好,得到制冷剂流量为23 m L/min时的热阻为0.289℃/W。