首页> 外文会议>Conference on Laser Technology for Defense and Security >Three-year aging of prototype flight laser at 10 kHz and 1 ns pulses with external frequency doubler for ICESat-2 Mission
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Three-year aging of prototype flight laser at 10 kHz and 1 ns pulses with external frequency doubler for ICESat-2 Mission

机译:带有外部倍频器的10 kHz和1 ns脉冲的原型飞行激光器三年老化,适用于ICESat-2任务

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We present the results of a three-year operational-aging test of a specially designed prototype flight laser operating at 1064 nm, 10 kHz, Ins, 15W average power and externally frequency-doubled. Fibertek designed and built the q-switched, 1064nm laser and this laser was in a sealed container of dry air pressurized to 1.3 atm. The external frequency doubler was in a clean room at a normal air pressure. The goal of the experiment was to measure degradation modes at 1064 and 532 nm separately. The external frequency doubler consisted of a Lithium triborate, LiB_3O_5, non-critically phase-matched crystal. After some 1064 nm light was diverted for diagnostics, 13.7W of fundamental power was available to pump the doubling crystal. Between 8.5W and 10W of 532nm power was generated, depending on the level of stress and degradation. The test consisted of two stages, the first at 0.3 J/cm~2 for almost 1 year, corresponding to expected operational conditions, and the second at 0.93 J/cm~2 for the remainder of the experiment, corresponding to accelerated optical stress testing. We observed no degradation at the first stress-level and linear degradation at the second stress-level. The linear degradation was linked to doubler crystal output surface changes from laser-assisted contamination. We estimate the expected lifetime for the flight laser at 532 nm using fluence as the stress parameter. This work was done for NASA's Ice, Cloud, and land Elevation Satellite-2 (ICESat-2) LIDAR at Goddard Space Flight Center in Greenbelt, MD with the goal of 1 trillion shots lifetime.
机译:我们介绍了经过特殊设计的原型飞行激光器三年运行老化测试的结果,该激光器工作在1064 nm,10 kHz,Ins,15W平均功率和外部倍频上。 tek火科技设计并制造了1064nm调Q开关激光器,该激光器位于密封的干燥空气中,压力为1.3 atm。外部倍频器在正常气压下的洁净室内。实验的目的是分别测量1064和532 nm处的降解模式。外部倍频器由三硼酸锂LiB_3O_5,非临界相位匹配晶体组成。在将大约1064 nm的光转移用于诊断后,可以使用13.7W的基本功率来泵浦倍频晶体。产生8.5nm至10W的532nm功率,具体取决于应力和退化程度。该测试包括两个阶段,第一阶段以0.3 J / cm〜2的速度进行了将近1年的时间,对应于预期的操作条件;第二阶段以0.93 J / cm〜2的速度进行了其余的实验,对应于加速的光学应力测试。我们没有观察到在第一应力水平下的退化,而在第二应力水平下的线性退化。线性降解与激光辅助污染引起的倍频晶体输出表面变化有关。我们使用能量密度作为应力参数,估计了532 nm飞行激光器的预期寿命。这项工作是在马里兰州格林贝尔特的戈达德太空飞行中心为NASA的冰,云和陆地高空卫星2(ICESat-2)激光雷达完成的,目标是寿命达到1万亿发。

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