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Investigations of transient thermal properties of conductively cooled diode laser arrays operating under quasicontinuous-wave conditions

机译:在准连续波条件下工作的导电冷却二极管激光器阵列的瞬态热特性研究

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摘要

Thermal properties of diode laser arrays not only affect electrical and optical characteristics, they can also become determining factors for long-term reliability of the devices. Here, we report on the investigations of transient thermal effects in high-power diode arrays operating under quasicontinuous-wave (QCW) conditions. A novel measurement setup for the transient junction temperature determination is proposed. We show the measurement results of conductively cooled diode laser arrays mounted on the conventional copper heat sink as well as on the thermal expansion matched CuW submount. The presented results allow evaluation of the thermal cycling experienced by the device during pulsed operation. In the following part, time-resolved wavelength and temperature variations within an array are presented. The guidance for heat sink material choice for high-power diode laser arrays designed for QCW operation is given.
机译:二极管激光器阵列的热特性不仅影响电气和光学特性,而且还可能成为决定设备长期可靠性的决定性因素。在这里,我们报告在准连续波(QCW)条件下工作的大功率二极管阵列中瞬态热效应的研究。提出了一种用于瞬态结温度确定的新型测量装置。我们显示了安装在常规铜散热器以及热膨胀匹配的CuW基座上的导电冷却二极管激光器阵列的测量结果。呈现的结果允许评估设备在脉冲操作期间经历的热循环。在以下部分中,介绍了阵列中时间分辨的波长和温度变化。给出了为QCW操作设计的大功率二极管激光器阵列的散热器材料选择指南。

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