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Supercontinuum Generation in Holey Microstructure Fibres with Random Cladding Distribution by Femtosecond Laser Pulses

机译:飞秒激光脉冲在具有随机包层分布的多孔微结构光纤中产生超连续谱

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It is reported that supercontinuum spectrum from 440 to 1050 nm can be generated in holey microstructure fibres (HMFs) with random cladding distribution by Ti:sapphire femtosecond laser pulses with central wavelength of 800 nm. Based on the method of the effective refractive index and the analogy of step-index fibre, we have calculated the effective mode area and the group velocity dispersion (GVD). It is found that the HMFs have specifically ability of localizing light and controlling GVD. The mechanism of supercontinuum generation in the HMFs with random cladding distribution is that the balance between the GVD and the self-phase modulation in the anomalous dispersion region leads to formation of solitons and fission of high order solitons.
机译:据报道,中心波长为800 nm的Ti:蓝宝石飞秒激光脉冲可在具有随机包层分布的多孔微结构光纤(HMF)中产生440至1050 nm的超连续谱。基于有效折射率的方法和阶跃光纤的类比,我们计算了有效模式面积和群速度色散(GVD)。已经发现,HMF具有特定的定位光和控制GVD的能力。在具有随机包层分布的HMF中产生超连续谱的机制是,在GVD和反常色散区域中自相调制之间的平衡会导致孤子的形成和高阶孤子的裂变。

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