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Reliable pump sources for high-energy class lasers

机译:高能级激光器的可靠泵浦源

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High-energy class laser systems operating at high average power are destined to serve fundamental research and commercial applications. System cost is becoming decisive, and JENOPTIK supports future developments with the new range of 500 W quasi-continuous wave (QCW) laser diode bars. In response to different strategies in implementing high-energy class laser systems, pump wavelengths of 880 nm and 940 nm are available. The higher power output per chip increases array irradiance and reduces the size of the optical system, lowering system cost. Reliability testing of the 880 nm laser diode bar has shown 1 Gshots at 500 W and 300 us pulse duration, with insignificant degradation. Parallel operation in eight-bar diode stacks permits 4 kW pulse power operation. A new high-density QCW package is under development at JENOPTIK. Cost and reliability being the design criteria, the diode stacks are made by simultaneous soldering of submounts and insulating ceramic. The new QCW stack assembly technology permits an array irradiance of 12.5 kW/cm~2. We present the current state of the development, including laboratory data from prototypes using the new 500 W laser diode in dense packaging.
机译:以高平均功率运行的高能级激光系统注定要为基础研究和商业应用服务。系统成本变得越来越具有决定性,JENOPTIK推出了500 W准连续波(QCW)激光二极管棒的新系列,为未来的发展提供了支持。为了响应实施高能级激光系统的不同策略,可以使用880 nm和940 nm的泵浦波长。每个芯片更高的功率输出增加了阵列辐照度并减小了光学系统的尺寸,从而降低了系统成本。 880 nm激光二极管棒的可靠性测试显示,在500 W和300 us脉冲持续时间下有1 Gshots,且衰减不明显。八极二极管堆栈中的并联运行允许4 kW脉冲功率运行。 JENOPTIK正在开发一种新的高密度QCW封装。成本和可靠性是设计标准,二极管叠层是通过同时焊接底座和绝缘陶瓷制成的。新的QCW堆栈组装技术允许阵列辐照度为12.5 kW / cm〜2。我们介绍了当前的发展状况,包括使用密集封装的新型500 W激光二极管的原型获得的实验室数据。

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