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Chirped pulse compression in all-glass Yb-doped hybrid fiber with anomalous dispersion in 1 μm spectral range

机译:全玻璃掺Yb杂化光纤的脉冲压缩,在1μm光谱范围内有异常色散

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In the present work, we fabricated Yb-doped hybrid fiber, where unwanted mode suppression was achieved due to selective mode amplification technique. An asymptotically single-mode propagation regime of the realized hybrid fiber was observed in the amplifier scheme even for the case when significant amount of undesirable modes was excited at the fiber input. Measured dispersion of the hybrid fiber at wavelength of 1030 nm was about 70 psec/(nm-km). The realized hybrid fiber was used as nonlinear compressor in all-fiber amplifier scheme. As a seed source we used a commercially available chirped pulse laser (λ~ 1030 nm, a spectrum width was 11 nm and a pulse repetition rate was 42 MHz, pulse duration was adjusted to be of 1 psec by diffraction gratings established on the output of the seed laser). In our experiment to guarantee shorter optimal active fiber length we chose wavelength stabilized pump source at 976 nm. Thus the record high peak power (~10 kW) for all-fiber femtosecond Yb-doped laser schemes was achieved.
机译:在目前的工作中,我们制造了掺Yb杂化光纤,由于选择模式放大技术,实现了不需要的模式抑制。即使在光纤输入端激发了大量不良模式的情况下,在放大器方案中也观察到了实现的混合光纤的渐近单模传播机制。杂化光纤在1030 nm波长处测得的色散约为70 psec /(nm-km)。所实现的混合光纤被用作全光纤放大器方案中的非线性压缩器。作为种子源,我们使用了市售的chi脉冲激光(λ〜1030 nm,光谱宽度为11 nm,脉冲重复频率为42 MHz,通过在激光束输出端建立的衍射光栅将脉冲持续时间调整为1 psec)。种子激光)。在我们的实验中,为了保证较短的最佳有源光纤长度,我们选择了波长稳定的泵浦光源,波长为976 nm。因此,实现了全光纤飞秒掺Yb激光器方案的创纪录的高峰值功率(〜10 kW)。

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