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On the power threshold of mode instabilities

机译:关于模式不稳定性的功率阈值

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摘要

The exponential growth of the average output power of fiber laser systems seen over the last decade has recently come to an abrupt halt due to the onset of a new phenomenon: mode instabilities [1]. In this effect, the stable Gaussian output beam of a fiber amplifier starts to fluctuate suddenly once that a certain average power threshold has been reached. This effect is particularly damaging because it undermines one of the most valued characteristics of fiber laser systems: their power-independent beam quality. Thus, in the fiber laser community there is a consensus that solutions are urgently needed. This explains the amount of attention that this effect has attracted over the last two years. In this period of time, the theoretical basis for the understanding of the effect has been set. Thus, the physical origin of mode instabilities has been identified to be a thermally induced long-period grating caused by the interference between two fiber modes [2]. It has been demonstrated that this thermally-induced grating is able to transfer energy between the otherwise orthogonal fiber modes that ultimately give rise to it [2-4]
机译:由于出现了一种新的现象:模式不稳定性,最近十年来,光纤激光器系统平均输出功率的指数增长突然停止。这样,一旦达到一定的平均功率阈值,光纤放大器的稳定高斯输出光束就会开始突然波动。这种影响尤其具有破坏性,因为它破坏了光纤激光器系统最有价值的特性之一:它们的功率无关光束质量。因此,在光纤激光器社区中,已经达成共识,迫切需要解决方案。这解释了这种效果在过去两年中吸引了很多关注。在这段时间里,已经为理解效果奠定了理论基础。因此,模式不稳定性的物理根源已被确定为是由两种光纤模式之间的干涉引起的热诱导长周期光栅[2]。已经证明,这种热感应光栅能够在否则会正交的光纤模式之间转移能量,最终导致光纤模式[2-4]

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