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Improving Reliability of High Power Quasi-CW Laser Diode Arrays for Pumping Solid State Lasers

机译:提高用于泵浦固态激光器的大功率准CW激光二极管阵列的可靠性

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摘要

Most Lidar applications rely on moderate to high power solid state lasers to generate the required transmitted pulses. However, the reliability of solid state lasers, which can operate autonomously over long periods, is constrained by their laser diode pump arrays. Thermal cycling of the active regions is considered the primary reason for rapid degradation of the quasi-CW high power laser diode arrays, and the excessive temperature rise is the leading suspect in premature failure. The thermal issues of laser diode arrays are even more drastic for 2-micron solid state lasers which require considerably longer pump pulses compared to the more commonly used pump arrays for 1-micron lasers. This paper describes several advanced packaging techniques being employed for more efficient heat removal from the active regions of the laser diode bars. Experimental results for several high power laser diode array devices will be reported and their performance when operated at long pulsewidths of about 1msec will be described.
机译:大多数激光雷达应用都依赖于中功率至高功率固态激光器来生成所需的发射脉冲。但是,固态激光器可以长时间自动运行,其可靠性受到其激光二极管泵浦阵列的限制。有源区的热循环被认为是准CW高功率激光二极管阵列快速退化的主要原因,而过高的温度升高是导致过早失效的主要原因。与2微米固态激光器相比,与2微米固态激光器更常用的泵浦脉冲相比,激光二极管阵列的散热问题更为严峻。本文介绍了几种先进的封装技术,这些技术可用于更有效地从激光二极管条的有效区域中去除热量。将报告几种高功率激光二极管阵列器件的实验结果,并描述其在约1毫秒的长脉冲宽度下工作时的性能。

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