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Broadband supercontinuum generation based on filled structural photonic crystal fibers with low incident optical power

机译:基于填充结构光子晶体纤维的宽带超连续纤维,具有低入射光功率

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摘要

Highly nonlinear photonic crystal fibers (PCFs) can be used as a kind of new ways to realize the supercontinuum generation because of their highly nonlinear effects. Based on a type of material-filled method and structure, novel highly nonlinear PCFs are proposed to compare with the conventional highly nonlinear fiber for supercontinuum generation in this manuscript. The nonlinear coefficient and supercontinuum spectra varying with different parameters such as the hole-diameter, the hole-pitch and the refractive index of the filled material are investigated respectively and analyzed numerically. Even if lower incident optical power is used on the designed PCFs than that on the conventional fiber and the previous proposed PCFs, broadband supercontinuum can still be obtained easily from highly nonlinear effects. The results demonstrate that it is possible for this kind of novel PCFs to achieve the maximum 450 nm supercontinuum spectra, even though it is only 50-cm-long fiber and pumped by substantially lower incident optical power of 1.5 W near the wavelength of 1.55 μm.
机译:由于其高度非线性效应,高度非线性光子晶体纤维(PCFS)可用作实现超连续产生的新方法。基于一种材料填充的方法和结构,提出了新颖的高度非线性PCF,以与该稿件中的超连续生成的传统高度非线性纤维进行比较。在数值上分别研究了不同参数的非线性系数和超连续谱不同,并且在数值上分析并分析。即使在设计的PCF上使用比传统光纤和先前提出的PCF上的较低的入射光电源,宽带超级胰岛仍然可以从高度非线性效应获得。结果表明,这种新颖的PCF可以实现最大450nm超强素光谱,即使它仅为50厘米长的纤维,并且在1.5W的波长为1.55μm的最大较低的入射光功率下泵送。

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