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Erbium:Ytterbium Fiber-Laser System delivering Watt-level femtosecond pulses using Divided Pulse Amplification

机译:铒:使用划分脉冲放大提供瓦特纤维激光系统提供瓦特级飞秒脉冲

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We present an Erbium:Ytterbium codoped fiber-amplifer system based on Divided-Pulses-Amplification (DPA) for ultrashort pulses. The output from a saturable-absorber mode-locked polarization-maintaining (PM) fiber oscillator is amplified in a PM normal-dispersion Erbium-doped fiber. After this stage the pulses are positively chirped and have a duration of 2.0 ps at an average power of 93 mW. A stack of 5 birefringent Yttrium-Vanadate crystals divides these pulses 32 times. We amplify these pulses using a double-clad Erbium:Ytterbium codoped fiber pumped through a multimode fiber combiner. The pulses double pass the amplifier and recombine in the crystals using non-reciprocal polarization 90° rotation by a Faraday rotating mirror. Pulses with a duration of 144 fs are obtained after separation from the input beam using a polarizing beam splitter cube. These pulses have an average power of 1.85 W at a repetition rate of 80 MHz. The generation of femtosecond pulses directly from the amplifier was enabled by a positively chirped seed pulse, normally dispersive Yttrium-Vanadate crystals, and anomalously dispersive amplifier fibers. Efficient frequency doubling to 780 nm with an average power of 725 mW and a pulse duration of 156 fs is demonstrated. In summary we show a DPA setup that enables the generation of femtosecond pulses at watt-level at 1560 nm without the need for further external dechirping and demonstrate a good pulse quality by efficient frequency doubling. Due to the use of PM fiber components and a Faraday rotator the setup is environmentally stable.
机译:我们提出了一种基于分割脉冲放大(DPA)的erbium:YTTerbium Compoped光纤放大器系统,用于超短脉冲。从饱和吸收模式锁定的偏振 - 保持(PM)光纤振荡器的输出在PM正常色散掺铒光纤中被扩增。在此阶段之后,脉冲呈正啁啾并且在93mW的平均功率下具有2.0 p的持续时间。 5个双折射钇钒晶体的堆叠将这些脉冲分成32次。我们使用双包装铒(YTterbium)纤维通过多模光纤组合器泵浦的棉花纤维,扩大这些脉冲。脉冲通过法拉第旋转镜旋转,将放大器双面通过晶体中的放大器并重新组合。使用偏振分束器立方体从输入光束分离后获得具有持续144fs的脉冲。这些脉冲的平均功率为1.85W,重复率为80MHz。通过正啁啾的种子脉冲,通常分散的钇钒晶体和异常分散放大器纤维,能够直接从放大器产生飞秒脉冲。对780nm的高效频率,平均功率为725 mW和156 fs的脉冲持续时间。总结,我们显示了DPA设置,使得在1560nm处的WATT级别的飞秒脉冲产生不需要进一步的外部Dechirping并通过有效的频率加倍展示良好的脉搏质量。由于PM光纤部件和法拉第旋转器的使用,设置是环保的。

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