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Super continuum generation at 800 nm in highly nonlinear photonic crystal fibers with normal dispersion

机译:具有正常色散的高度非线性光子晶体光纤在800nm处产生超连续谱

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摘要

More than 90 nm broad self-phase modulation (SPM) induced pulses have been created from both 25 and 50 fs pulses in just 12.5 cm of fiber. The broadening is more than 2.5 times that observed in standard SMF. SPM broadening in PCFs has several advantages over more complex super continuum generation (SCG) effects in fibers with zero or positive dispersion at the pumping wavelength. The output is very stable, there is no loss of power to unwanted wavelengths and the spectral shape is relatively insensitive to fluctuations in pumping power. This also makes the output suitable for subsequent compression, for 10 fs-range pulse generation. By shifting the zero-dispersion and pumping wavelength to the telecom range, WDM sources become a potential application.
机译:在仅12.5 cm的光纤中,由25 fs和50 fs的脉冲产生了超过90 nm的宽自相位调制(SPM)感应脉冲。增宽超过标准SMF中观察到的2.5倍。在泵浦波长处零色散或正色散的光纤中,PCF中SPM拓宽相对于更复杂的超连续谱生成(SCG)效果具有多个优势。输出非常稳定,没有功率损失到不想要的波长,并且光谱形状对泵浦功率的波动相对不敏​​感。这也使输出适合于随后的压缩,以产生10 fs范围的脉冲。通过将零色散和泵浦波长移动到电信范围,WDM信号源成为潜在的应用。

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