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首页> 外文期刊>IEEE Journal of Quantum Electronics >Incoherent Combining and Atmospheric Propagation of High-Power Fiber Lasers for Directed-Energy Applications
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Incoherent Combining and Atmospheric Propagation of High-Power Fiber Lasers for Directed-Energy Applications

机译:用于定向能量应用的高功率光纤激光器的非相干组合和大气传播

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摘要

High-power fiber lasers can be incoherently combined to form the basis of a directed high-energy laser system which is highly efficient, compact, robust, low-maintenance and has a long operating lifetime. This approach has a number of advantages over other beam combining methods. We present results of the first field demonstration of incoherent beam combining using kilowatt-class, single-mode fiber lasers. The experiment combined four fiber lasers using a beam director consisting of individually controlled steering mirrors. Propagation efficiencies of ${sim}$ 90%, at a range of 1.2 km, with transmitted continious-wave power levels of 3 kW were demonstrated in moderate atmospheric turbulence. We analyze the propagation of combined single-mode and multimode beams in atmospheric turbulence and find good agreement between theory, simulations and experiments.
机译:高功率光纤激光器可以不相干地组合在一起,构成定向高能激光器系统的基础,该系统高效,紧凑,坚固,维护成本低且使用寿命长。与其他光束组合方法相比,此方法具有许多优点。我们介绍了使用千瓦级单模光纤激光器进行非相干光束组合的首次现场演示结果。该实验使用由独立控制的转向镜组成的光束导向器组合了四个光纤激光器。在中等湍流条件下,传输效率为90%,在1.2 km的范围内,传输的连续波功率水平为3 kW。我们分析了组合的单模和多模光束在大气湍流中的传播,并在理论,仿真和实验之间找到了良好的一致性。

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