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Spectral compression of femtosecond pulses in photonic crystal fibers

机译:飞秒脉冲在光子晶体光纤中的频谱压缩

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摘要

We demonstrate efficient spectral compression of femtosecond pulses near the zero-dispersion wavelength in nonlinear photonic crystal fibers (PCFs). The highest measured compression factor is 21, in which case the spectral brightness increases by a factor of 5. We numerically model the pulse propagation and find good agreement with the experiment. We argue that the fibers studied allow for spectral narrowing of more than 2 orders of magnitude. With dispersion-shifted PCFs, efficient spectral compression can take place across the visible and near-infrared part of the spectrum.
机译:我们展示了非线性光子晶体光纤(PCFs)中零色散波长附近的飞秒脉冲的有效频谱压缩。测得的最高压缩系数为21,在这种情况下,光谱亮度增加了5倍。我们对脉冲传播进行了数值建模,并发现与实验吻合良好。我们认为所研究的纤维可使光谱变窄超过2个数量级。使用色散位移PCF,可以在光谱的可见和近红外部分进行有效的光谱压缩。

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