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Characteristics of Q-switched cladding-pumped ytterbium-doped fiber lasers with different high-energy fiber designs

机译:具有不同高能光纤设计的Q开关包层泵浦掺镱光纤激光器的特性

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摘要

We theoretically and experimentally analyze Q-switched cladding pumped ytterbium-doped fiber lasers designed for high pulse energies. We compare the extractable energy from two high-energy fiber designs: (1) single- or few-moded low-NA large mode area (LMA) fibers and (2) large-core multimode fibers, which may incorporate a fiber taper for brightness enhancement. Our results show that the pulse energy is proportional to the effective core area and, therefore, LMA fibers and multimode fibers of comparable core size give comparable results. However, the energy storage in multimode fibers is mostly limited by strong losses due to amplified spontaneous emission (ASE) or even spurious lasing between pulses. The ASE power increases with the number of modes in a fiber. Furthermore, spurious feedback is more difficult to suppress with a higher NA, and Rayleigh back-scattering increases with higher NA, too. These effects are smaller in low-NA LMA fibers, allowing for somewhat higher energy storage. For the LMA fibers, we found that facet damage was a more severe restriction than ASE losses or spurious lasing. With a modified laser cavity, we could avoid facet damage in the LMA fiber, and reached output pulse energies as high as 2.3 mJ, limited by ASE. Theoretical estimates suggest that output pulse energies around 10 mJ are feasible with a larger core fiber, while maintaining a good beam quality
机译:我们在理论上和实验上分析了专为高脉冲能量设计的调Q包层抽运掺-光纤激光器。我们比较了两种高能光纤设计中的可提取能量:(1)单模或少模低NA大模面积(LMA)光纤和(2)大芯多模光纤,其中可能包含光纤锥度以提高亮度增强。我们的结果表明,脉冲能量与有效纤芯面积成正比,因此,具有可比纤芯尺寸的LMA光纤和多模光纤可提供相近的结果。但是,多模光纤中的能量存储主要受到放大的自发发射(ASE)甚至脉冲之间的虚假激射引起的强烈损耗的限制。 ASE功率随光纤中模式数量的增加而增加。此外,NA越高,杂散反馈越难以抑制,NA越高,瑞利反向散射也会增加。在低NA LMA光纤中,这些影响较小,从而允许更高的能量存储。对于LMA光纤,我们发现,小平面损伤比ASE损失或伪激光更严重。使用改进的激光腔,我们可以避免LMA光纤的小面损坏,并获得高达2.3 mJ的输出脉冲能量,受到ASE的限制。理论估计表明,对于较大的芯光纤,在保持良好光束质量的同时,大约10 mJ的输出脉冲能量是可行的

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