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Liquid-Core Photonic Crystal Fiber for Supercontinuum Generation Based on Hybrid Soliton Dynamics

机译:基于混合孤子动力学的超连续谱液芯光子晶体光纤

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We present a detailed study of the nonlinear pulse propagation in a commercial hollow-core photonic crystal fiber (PCF), whose core was infiltrated with carbon disulfide (CS2), an organic solvent with high nonlinear properties useful to increase the performance of the supercontinuum generation (SCG) in terms of the bandwidth centered at the telecom range. We included the recently CS2 response function measured by Reichert et al [1] which gives rise to a new so-called hybrid soliton due to the slow response of the material [2]. We also study the dependence of SCG on several input parameters such as pulse width, energy, and length of the liquid-core PCF (LCPCF). The zero dispersion wavelength was numerically found around 1.86 μm for this geometry. In this sense, the pump wavelength was chosen to be around 1.95 μm in order to ensure propagation in the anomalous dispersion regime.
机译:我们提供了对商用中空光子晶体光纤(PCF)中非线性脉冲传播的详细研究,该光纤的芯被二硫化碳(CS)渗透 2 ),一种具有高非线性特性的有机溶剂,对​​于以电信范围为中心的带宽而言,可用于提高超连续谱(SCG)的性能。我们包括了最近的CS 2 由Reichert等人[1]测量的响应函数,由于材料的缓慢响应而产生了一种新的所谓的混合孤子[2]。我们还研究了SCG对几个输入参数的依赖性,例如脉冲宽度,能量和液芯PCF(LCPCF)的长度。对于该几何形状,在数值上发现零色散波长为1.86μm左右。从这个意义上讲,泵浦波长选择为约1.95μm,以确保在异常色散状态下传播。

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