首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Supercontinuum broadening in all-normal dispersion photonic crystal fiber by means of soliton compression in standard single-mode fiber
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Supercontinuum broadening in all-normal dispersion photonic crystal fiber by means of soliton compression in standard single-mode fiber

机译:通过标准单模光纤中的孤子压缩,使全正常色散光子晶体光纤中的超连续谱展宽

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摘要

Using standard single-mode fiber as high-order soliton compressor for broadening supercontinuum in an 80 m long all-normal dispersion photonic crystal fiber is investigated experimentally and numerically. An analytical formula for calculating proper fiber input power to generate the broadest supercontinuum is derived. The numerical results show that the formula is more accurate in high power level corresponding to the soliton order which is larger than two. The measured supercontinuum - 20 dB bandwidth is broadened from 84.2 nm to 277.1 nm by using a 20 m long standard single-mode fiber without enhancing fiber input power. Numerical calculations of the amplitude noise in the output spectra show that using soliton compression effect can efficiently broaden the spectral bandwidth and not generate obvious noises.
机译:实验和数值研究了使用标准单模光纤作为高阶孤子压缩机来加宽80 m长全法向色散光子晶体光纤中的超连续谱。推导了用于计算适当的光纤输入功率以生成最宽的超连续谱的解析公式。数值结果表明,该公式在大于2的孤子阶数的高功率水平下更为精确。通过使用20 m长的标准单模光纤,在不提高光纤输入功率的情况下,将测量的超连续谱-20 dB带宽从84.2 nm扩展到277.1 nm。输出频谱中振幅噪声的数值计算表明,使用孤子压缩效应可以有效地拓宽频谱带宽,并且不会产生明显的噪声。

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