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Triple-clad large-pitch fibers for compact high-power pulsed fiber laser systems

机译:三层大节距光纤,用于紧凑型高功率脉冲光纤激光器系统

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摘要

We present a novel ytterbium (Yb)-doped large-pitch fiber design with significantly increased pump absorption and higher energy storage/gain per unit length, which enables high-peak-power fiber laser systems with smaller footprints. Up to now index matching between core and surrounding material in microstructured fibers was achieved by co-doping the active core region with fluorine. Here we carry out the index matching by passively doping the cladding with germanium, thus raising its index of refraction. Hence, the fluorine in the core can be omitted, which leads to an effective increase of the core doping concentration, while detrimental effects such as photo-darkening and lifetime quenching are avoided by maintaining the bulk Yb concentration. Experiments and simulations show that a gain higher than 50 dB/m and an output average power higher than 100 W with excellent beam quality are feasible even with a fiber length of only 40 cm.
机译:我们提出了一种新颖的掺large大间距光纤设计,具有显着提高的泵浦吸收能力和更高的每单位长度能量存储/增益,这使得占用空间更小的高峰值功率光纤激光器系统成为可能。到目前为止,微结构纤维中纤芯和周围材料之间的折射率匹配是通过将活性纤芯区域与氟共掺杂实现的。在这里,我们通过用锗被动掺杂覆层来进行折射率匹配,从而提高其折射率。因此,可以省略芯中的氟,这导致芯掺杂浓度的有效增加,同时通过保持整体Yb浓度避免了诸如光暗化和寿命猝灭之类的有害影响。实验和模拟表明,即使光纤长度只有40 cm,也可以实现高于50 dB / m的增益和高于100 W的输出平均功率,并且光束质量极好。

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