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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Evolution of finite-energy Airy pulse interaction with high-power soliton pulse in optical fiber with higher-order effects
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Evolution of finite-energy Airy pulse interaction with high-power soliton pulse in optical fiber with higher-order effects

机译:具有高阶效应的光纤中高功率孤子脉冲有限能量通风脉冲相互作用的演变

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AbstractWhen a low-power finite-energy Airy pulse (FEAP) and a high-power soliton pulse simultaneously propagate in an optical fiber, we numerically study the evolution of the FEAP affected by higher-order effects, including third-order dispersion (TOD), Raman scattering and self-steepening (SS). It is found that shedding solitons are generated from the FEAP due to the effect of cross-phase modulation (XPM). The TOD only affects the center position of the shedding soliton, but does not change the spectrum structure. The truncation coefficient of a FEAP, TOD and SS can be used to manipulate the Raman-induced frequency shift (RIFS). It is demonstrated that the RIFS is suppressed obviously by both positive TOD, SS and a small truncation coefficient, but the RIFS is enhanced by the negative TOD and a larger truncation coefficient. Further, we comparatively study the simultaneous contributions of TOD, Raman, and SS to the evolution of a FEAP and a Sech pulse, respectively. It is shown that the FEAP generates some static solitons besides the conventional Raman soliton and the whole spectrum is broadened that extended towards to the blue-shifted side besides the conventional red-shifted components. Our results indicate that the FEAP has potential application in supercontinuum generation and broadband sources.]]>
机译:<![cdata [ 抽象 当低功耗有限能量通气脉冲(FEAP)和高功率孤子脉冲同时传播在光纤中,我们在数值上进行研究受高阶效应影响的FEAP的演变,包括三阶分散(TOD),拉曼散射和自我陡峭(SS)。发现由于交叉相位调制(XPM)的效果,从FEAP产生脱落孤子。 TOD仅影响Shedding Soliton的中心位置,但不会改变频谱结构。 FEAP,TOD和SS的截断系数可用于操纵拉曼感应的频移(RIFS)。结果表明,通过正TOD,SS和小截断系数明显抑制了RIF,但是通过负TOD和更大的截断系数来增强RIF。此外,我们比较研究了TOD,拉曼和SS对FEAP和SECH脉冲的演变的同时贡献。结果表明,除了传统的拉曼孤子之外,FEAP还产生一些静态孤子,并且整个光谱扩大,除了传统的红色移位组分之外,朝向蓝移侧延伸到蓝移侧。我们的结果表明,FEAP在超连续生成和宽带源中具有潜在应用。 ]]>

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