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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Nanoengineering of photonic crystal fibers for supercontinuum spectral shaping
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Nanoengineering of photonic crystal fibers for supercontinuum spectral shaping

机译:用于超连续谱成形的光子晶体光纤的纳米工程

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摘要

Supercontinuum generation using picosecond pulses pumped into cobweb photonic crystal fibers is investigated. Dispersion profiles are calculated for several fiber designs and used to analytically investigate the influence of the fiber structural parameters (core size and wall thickness) on the location of the Stokes and antiStokes bands and gain bandwidth. An analysis shows that the Raman effect is responsible for reducing the four-wave mixing gain and a slight reduction in the corresponding frequency shift from the pump, when the frequency shift is much larger than the Raman shift. Using numerical simulations we find that four-wave mixing is the dominant physical mechanism for the pumping scheme considered, and that there is a trade-off between the spectral width and the spectral flatness of the supercontinuum. The balance of this trade-off is determined by nanometer-scale design of the fiber structural parameters. It is also shown that the relatively high loss of the nonlinear fiber does not significantly affect the supercontinuum. generation. (c) 2006 Optical Society of America.
机译:研究了使用皮秒脉冲泵浦到蜘蛛网光子晶体光纤中产生的超连续谱。计算了几种光纤设计的色散分布,并用于分析研究光纤结构参数(纤芯尺寸和壁厚)对斯托克斯和反斯托克斯频带的位置以及增益带宽的影响。分析表明,当频移比拉曼频移大得多时,拉曼效应会导致四波混频增益的降低和泵浦相应频移的轻微降低。通过数值模拟,我们发现四波混频是考虑的泵浦方案的主要物理机制,并且在超连续谱的光谱宽度和光谱平坦度之间存在折衷。这种权衡的平衡取决于纤维结构参数的纳米级设计。还表明,非线性纤维的较高损耗不会显着影响超连续谱。代。 (c)2006年美国眼镜学会。

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