首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Numerical analysis of supercontinuum generation in highly nonlinear photonic crystal fibers with ultrashort pulses
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Numerical analysis of supercontinuum generation in highly nonlinear photonic crystal fibers with ultrashort pulses

机译:具有超短脉冲的高度非线性光子晶体光纤中超连续谱产生的数值分析

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We have numerically investigated supercontinuum generation in photonic crystal fibers with zero-dispersion wavelengths in the vicinity of 800 nm by using an input pulse with a peak power of about 20 kW and a width of about 10 fs. The effects of fiber dispersion and the input pulse parameters on the generated optical spectra are quantitatively analyzed. The propagation length necessary for the generation of a soliton in the anomalous dispersion region is found to depend on the zero-dispersion wavelength of a fiber. For the generation of a sufficiently broad spectrum, the photonic crystal fiber should be longer than the soliton-generation length. In addition, a spectral recoil effect appears when a solitary wave splits the dispersive wave into two parts.
机译:我们已经通过使用峰值功率约为20 kW,宽度约为10 fs的输入脉冲,对零色散波长在800 nm附近的光子晶体光纤中的超连续谱产生进行了数值研究。定量分析了光纤色散和输入脉冲参数对生成的光谱的影响。发现在异常色散区域中产生孤子所需的传播长度取决于光纤的零色散波长。为了产生足够宽的光谱,光子晶体光纤应比孤子产生的长度更长。另外,当孤波将色散波分为两部分时,会出现频谱反冲效应。

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