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High efficiency, high power 808-nm laser array and stacked arrays optimized for elevated temperature operation

机译:高效率,高功率808-NM激光阵列和堆叠阵列优化,高温操作

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Operation of 808-nm laser diode pumps 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 demonstrate high efficiency and high power operation at elevated temperatures 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 percent was obtained through lowered threshold current and 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.
机译:在升高温度下的808-NM激光二极管泵对许多应用至关重要。高功率的可靠操作受高热负荷和低灾难性光学镜(COMD)阈值的限制在升高的温度范围内。我们展示了高效率和高功率的高电源操作,高温电源。这些结果是通过器件设计优化实现的,例如生长条件,掺杂型材和量子孔和其他层的材料组成。通过降低的阈值电流和降低的串联电阻和增加的斜率效率,获得高达62%的电光效率。单个宽面积激光二极管的性能在水冷铜微通道散热器上或导电冷却的CS散热器上的高功率单杆的性能。当这些微通道冷却器组装成6杆和18bar CW堆叠的最高功率水平时,看不到条形性能或显着的光谱展览。

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