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Modal energy transfer by thermally induced refractive index gratings in Yb-doped fibers

机译:掺Yb光纤中热诱导折射率光栅的模态能量传递

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摘要

Thermally induced refractive index gratings in Yb-doped fibers lead to transverse mode instability (TMI) above an average power threshold, which represents a severe problem for many applications. To obtain a deeper understanding of TMI, the evolution of the strength of the thermally induced refractive index grating with the average output power in a fiber amplifier is experimentally investigated for the first time. This investigation is performed by introducing a phase shift between the refractive index grating and modal interference pattern, which is obtained by applying a pump power variation to the fiber amplifier. It is demonstrated that the refractive index grating is sufficiently strong to enable modal energy coupling at powers that are significantly below the TMI threshold if the induced phase shift is sufficiently large. The experiments indicate that at higher powers, the refractive index grating becomes more sensitive to such phase shifts, which will ultimately trigger TMI. Furthermore, the experimental results demonstrate beam cleaning above the TMI threshold via the introduction of a positive phase shift. This finding paves the way for the development of a new class of mitigation strategies for TMI that are based on controlling the phase shift between the thermally induced refractive index grating and modal interference pattern.
机译:掺Yb光纤中的热诱导折射率光栅会导致横模不稳定性(TMI)高于平均功率阈值,这对许多应用而言都是一个严重的问题。为了更深入地了解TMI,首次实验研究了光纤放大器中热诱导折射率光栅的强度随平均输出功率的变化。通过在折射率光栅和模态干涉图案之间引入相移来执行此研究,该相移是通过向光纤放大器施加泵浦功率变化来获得的。已经证明,如果诱导的相移足够大,则折射率光栅足够坚固,以使得能够以明显低于TMI阈值的功率进行模态能量耦合。实验表明,在较高功率下,折射率光栅对这种相移变得更加敏感,这最终将触发TMI。此外,实验结果表明,通过引入正相移,可以将光束清洁到TMI阈值以上。这一发现为基于控制热感应折射率光栅和模态干涉图样之间的相移的新型TMI缓解策略铺平了道路。

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