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Atmospheric propagation and combining of high-power lasers

机译:大功率激光的大气传播和组合

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摘要

In this paper, we analyze beam combining and atmospheric propagation of high-power lasers for directed-energy (DE) applications. The large linewidths inherent in high-power fiber and slab lasers cause random phase and intensity fluctuations that occur on subnanosecond time scales. Coherently combining these high-power lasers would involve instruments capable of precise phase control and operation at rates greater than similar to 10 GHz. To the best of our knowledge, this technology does not currently exist. This presents a challenging problem when attempting to phase lock high-power lasers that is not encountered when phase locking low-power lasers, for example, at milliwatt power levels. Regardless, we demonstrate that even if instruments are developed that can precisely control the phase of high-power lasers, coherent combining is problematic for DE applications. The dephasing effects of atmospheric turbulence typically encountered in DE applications will degrade the coherent properties of the beam before it reaches the target. Through simulations, we find that coherent beam combining in moderate turbulence and over multikilometer propagation distances has little advantage over incoherent combining. Additionally, in cases of strong turbulence and multikilometer propagation ranges, we find nearly indistinguishable intensity profiles and virtually no difference in the energy on the target between coherently and incoherently combined laser beams. Consequently, we find that coherent beam combining at the transmitter plane is ineffective under typical atmospheric conditions. (C) 2016 Optical Society of America
机译:在本文中,我们分析了用于定向能量(DE)应用的高功率激光器的光束组合和大气传播。高功率光纤和平板激光器固有的大线宽会导致亚纳秒级的随机相位和强度波动。相干地组合这些高功率激光器将涉及能够以超过10 GHz的速率进行精确相位控制和操作的仪器。据我们所知,该技术目前尚不存在。当尝试锁相大功率激光器时,这会带来一个挑战性的问题,而锁相小功率激光器(例如,毫瓦功率水平)则不会遇到这种问题。无论如何,我们证明即使开发了可以精确控制大功率激光器相位的仪器,但相干合并对于DE应用来说还是有问题的。在DE应用中通常遇到的大气湍流的相移效应将在光束到达目标之前降低光束的相干特性。通过仿真,我们发现相干光束在中等湍流和多公里传播距离内​​的组合相对于非相干组合几乎没有优势。此外,在强湍流和多公里传播范围的情况下,我们发现相干和不相干组合激光束的强度分布几乎无法区分,并且目标上的能量几乎没有差异。因此,我们发现在典型的大气条件下,发射机平面的相干光束合并是无效的。 (C)2016美国眼镜学会

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