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Supercontinuum generation by femtosecond flat-top laser pulses in fused silica

机译:由FemtoSecond平板激光脉冲在熔融二氧化硅的超连续

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摘要

In this work we report the numerical results on the filamentation and supercontinuum (SC) generation of femtosecond flat-top pulses with different steep edges propagating in fused silica. Results show that the filamentation process is determined mainly by the self-steepening effect and ionization, and the SC generation is influenced mainly by the self-steepening effect. The filamentation onset and termination is determined by the leading edge and the tailing edge, respectively. The steeper the leading edge is, the earlier the filamentation onset is; the steeper the tailing edge is, the earlier the filamentation termination is. The cutoff wavelength in the blue-side region of the SC has no obvious difference for the pulses with different leading and tailing edges. But the spectral intensity of the blue extension is much stronger for the pulses with the steeper leading edges. The stronger spectral intensity results from the formation of more steep descending edges during filamentation. (C) 2019 Optical Society of America
机译:在这项工作中,我们在熔融二氧化硅中传播的不同陡峭边缘向飞秒平顶脉冲(SC)产生的丝绒和超连续脉冲产生的数值结果报告。结果表明,细丝过程主要由自我陡峭的效果和电离来确定,SC产生主要受到自我稳定效应的影响。丝状发作和终端分别由前缘和尾缘确定。陡峭的前缘是,较早的细丝发作是;尾部边缘的陡峭是,较早的细丝终端是。 SC的蓝侧区域中的截止波长对具有不同引导和尾翼的边缘的脉冲没有明显的差异。但是蓝色延伸的光谱强度对于具有陡峭的前沿的脉冲更强大。较强的光谱强度由细丝期间形成更陡峭的下降边缘。 (c)2019年光学学会

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