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Coherent beam combining of fiber amplifier array output through spectral self-phase conjugation via SBS

机译:通过SBS通过频谱自相位共轭输出的光纤放大器阵列的相干光束合并

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Coherent combining of laser beams into a single giant coherent beam with diffraction limited beam quality is one of the most challenging problems in laser physics. The effort given to this problem since the early sixties has been and continues to be enormous since this is the only viable way forward to further power scaling of lasers. The general idea of this approach is to split a single diffraction limited coherent beam into many beams which are then amplified by a parallel array of similar power amplifiers, the combined output from which will be like a single powerful diffraction limited beam. While there have been countless test-of-principle demonstrations at low power it is fair to say that none have had success in real high power systems. The main reason for this is the unavoidable and uncontrollable variation in phase shift (both linear and nonlinear) in the different amplification channels, rendering the combining process essentially incoherent even in a case when the original beam is perfectly coherent. The effect of spectral self-phase conjugation in SBS, recently discovered by the authors, offers a solution to this. We will discuss the basic principles of the effect and its main features and characteristics in regard to its application for coherent beam combining the output from a fiber amplifier array.
机译:激光束的相干组合成具有衍射极限束质量的单个巨型相干束是激光物理学中最具挑战性的问题之一。自从六十年代初期以来,对这个问题的努力一直并且一直是巨大的,因为这是进一步提高激光器功率缩放的唯一可行方法。这种方法的总体思路是将单个衍射受限的相干光束分成许多光束,然后由相似功率放大器的并行阵列放大,合并后的输出将像单个强大的衍射受限光束一样。尽管有无数的低功耗原理测试演示,但可以公平地说,在真正的高功率系统中没有成功的案例。造成这种情况的主要原因是不同放大通道中相移(线性和非线性)的不可避免和不可控制的变化,即使在原始光束完全相干的情况下,合并过程也基本上不相干。作者最近发现,SBS中的光谱自相位共轭效应可以解决此问题。我们将讨论该效应的基本原理及其在将相干光束应用于光纤放大器阵列输出的相干方面的主要特征。

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