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Asymmetric taper scrambler for improved pump homogeneity and absorption in side-pumped double-clad fibre lasers

机译:不对称锥形加扰器,用于改进的泵均匀性和侧面泵浦双包层纤维激光器的吸收

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摘要

A multimode optical fiber scrambler (MOFS) based on an asymmetric taper is demonstrated. The MOFS contains an adiabatic down-taper transition and an abrupt up-taper transition made into a double cladding fiber. This device improves the pump power absorption by two principal effects which adapt the side-coupled cladding light. The first one is to homogenize the ring-shaped light distribution from a side pump combiner before being launched into an active double-clad fiber. Secondly, provided the conservation of etendue, the low NA of that multimode beam is transformed during its propagation through the longer taper transition of the MOFS device. Then, a net NA increment occurs, so that it fills the full input NA of this fiber at the taper waist. The up-taper transition is non-adiabatic for the multimode beam so that it exits from the taper with the transformed NA. The MOFS was inserted into a >200 W fiber laser cavity and significantly improved the effective pump absorption from 0.6 dB m(-1) to 1.8 dB m(-1).
机译:证明了基于非对称锥度的多模光纤扰扰器(MOF)。 MOF含有绝热下锥形过渡和制成双包层纤维的突然上锥形转变。该器件通过两个主要效果改善泵功率吸收,其适应侧面耦合的包层光。第一个是在发射到有源双包层纤维之前将环形光分布均匀化。其次,提供了节约的守恒,在通过MOF装置的较长锥度转变期间将多模梁的低Na改变。然后,发生净NA增量,使其在锥形腰部填充该光纤的完整输入NA。向上锥度的过渡是多模梁的非绝热,使得它从锥形与变换的Na脱落。将MOF插入A> 200 W光纤激光腔中,从0.6 dB m(-1)至1.8dB m(-1)显着改善了有效泵吸收。

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