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Gamma-shaped long-cavity normal-dispersion modelocked Er-fiber laser for sub-nanosecond high-energy pulsed generation

机译:亚纳秒高能脉冲产生的γ形长腔正色散模型对接Er光纤激光器

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摘要

We propose the design of a novel γ-shaped fiber laser resonator and apply it to build a long-cavity normal-dispersion mode-locked Er-fiber laser which features enhanced functionalities for management and optimization of pulsed lasing regimes. We report the generation of sub-nanosecond pulses with the energy of ~0.5 μJ at a kilohertz-scale repetition rate in an all-fiber system based on the new laser design. A combination of special design solutions in the laser, such as polarization instability compensation in the ultra-long arm of the resonator, intra-cavity spectral selection of radiation with a broadband fiber Bragg grating, and polarization selection by means of a tilted refractive index grating, ensures low amplified spontaneous emission (ASE) noise and high stability of the laser system output parameters.
机译:我们提出了一种新型的γ形光纤激光谐振器的设计,并将其应用于构建长腔法向色散锁模Er光纤激光器,该激光器具有增强的功能,可以管理和优化脉冲激光方案。我们报告了在基于新激光设计的全光纤系统中,以千赫兹级重复率产生的能量约为0.5μJ的亚纳秒脉冲。结合激光器中的特殊设计解决方案,例如谐振器超长臂中的偏振不稳定性补偿,使用宽带光纤布拉格光栅的腔内辐射光谱选择以及借助倾斜折射率光栅的偏振选择,确保低放大的自发发射(ASE)噪声和激光系统输出参数的高稳定性。

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