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首页> 外文期刊>Laser physics letters >Ultra-short pulse generation in a linear femtosecond fiber laser using a Faraday rotator mirror and semiconductor saturable absorber mirror
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Ultra-short pulse generation in a linear femtosecond fiber laser using a Faraday rotator mirror and semiconductor saturable absorber mirror

机译:使用法拉第旋转镜和半导体可饱和吸收镜,线性飞秒光纤激光器中的超短脉冲产生

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摘要

An innovative method for obtaining ultra-short and perfectly stable femtosecond pulses in a linear erbium-doped fiber laser is proposed. A commercial semiconductor saturable absorber mirror and a standard Faraday rotator are used in both sides of the linear fiber optic laser configuration to shorten the pulse duration and suppress undesirable effects on the polarization state. The laser operation is investigated theoretically using a physical model and it is verified using experimental results. The main idea of this research is to apply a Faraday rotator mirror for pulse shortening purposes. For this reason, two types of Er-doped fiber optics with different group velocity dispersion parameters are used to achieve the optimum net group velocity dispersion in the cavity. Output results demonstrate good consistency between theory and experimental results. The output power of the linear oscillator is approximately 45 mW with 135 fs pulses at the 23.5 MHz repetition rate without any pulse compression.
机译:提出了一种在线性掺铒光纤激光器中获得超短且完全稳定的飞秒脉冲的创新方法。商业半导体可饱和吸收镜和标准的法拉第旋转器在线性光纤激光器配置的两侧使用,以缩短脉冲持续时间并抑制对偏振状态的不期望的影响。使用物理模型理论上研究激光操作,并使用实验结果验证。该研究的主要思想是应用一个法拉第旋转器镜,用于脉冲缩短目的。因此,使用具有不同组速度分散参数的两种类型的ER掺杂光纤来实现腔内的最佳净群速度分散。输出结果表明理论与实验结果之间的良好一致性。线性振荡器的输出功率约为45mW,235 MHz重复率为135 FS脉冲,而无需任何脉冲压缩。

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