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Compression of femtosecond ytterbium fibre laser pulses using nonlinear processes in silica fibre

机译:使用二氧化硅纤维的非线性工艺压缩飞秒镱光纤激光脉冲

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摘要

The temporal compression of 100-fs nanojoule laser pulses using nonlinear processes in silica fibre has been studied by numerical simulation and experimentally. The simulation results demonstrate that, in the case of spectral broadening in a normal dispersion fibre, followed by the temporal compression of the pulse in a compressor with a negative second-order dispersion, up to 90 % of the compressed pulse energy can be concentrated in the main peak, whose duration is a factor of 8 shorter than the initial laser pulse duration. In our experiments, 100-fs ytterbium fibre laser pulses have been compressed to pulses with an similar to 13-fs main peak accounting for 87 % of the compressed pulse energy. At an average ytterbium laser output power of 4.2 W, the average power at the compressor output has been 3.1 W.
机译:通过数值模拟和实验研究了使用二氧化硅纤维中的非线性过程的100-FS纳米jouge激光脉冲的时间压缩。 仿真结果表明,在正常色散纤维中的光谱展宽的情况下,随后是具有负二阶分散的压缩机中的脉冲的时间压缩,可以集中到高达90%的压缩脉冲能量 主峰,其持续时间比初始激光脉冲持续时间短8倍。 在我们的实验中,100-FS镱光纤激光脉冲已经被压缩成脉冲,其具有类似于13-FS主峰值的脉冲,占压缩脉冲能量的87%。 在平均镱激光输出功率为4.2W,压缩机输出的平均功率已为3.1W。

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