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Generation of parabolic pulse in a dispersion and nonlinearity jointly engineered silicon waveguide taper

机译:在分散和非线性中产生抛物线脉冲,共同工程化硅波导锥度

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摘要

In this paper, we numerically investigate the generation of parabolic pulse (PP) in a silicon waveguide taper with simultaneous variations of the group-velocity dispersion and nonlinearity along the propagation direction. The design of such a waveguide taper is based on the condition of self-similar propagation of the PP. When Gaussian, hyperbolic secant, and super-Gaussian pulses are propagated inside the waveguide taper designed, the evolution processes under the ideal condition are analyzed. Then the PP generation from Gaussian input is shown when higher-order dispersion, higher-order nonlinearity, linear loss, two-photon absorption, free-carrier absorption, and free-carrier dispersion are taken into account. Moreover, the influences of the initial chirp, pulse width, peak power, and waveguide length on the PP generation are further discussed. It is demonstrated that high-quality PP can be obtained with a mismatch parameter as low as 1.3 x 10(-3), in the designed silicon waveguide taper.
机译:在本文中,我们在硅波导锥度中的抛物线脉冲(PP)的产生,具有沿着传播方向的同时变化的组速度分散和非线性的同时变化。这种波导锥度的设计基于PP自我相似传播的条件。当高斯,双曲线和超高斯脉冲在设计的波导锥度内部传播时,分析了理想条件下的进化过程。然后考虑高阶分散,高阶非线性,线性损耗,双光子吸收,自由载体吸收和自由载体分散,显示来自高斯输入的PP生成。此外,还进一步讨论了初始啁啾,脉冲宽度,峰值功率和波导长度对PP生成的影响。结果证明,在设计的硅波导锥形中,可以在低至1.3×10(-3)中的不匹配参数获得高质量的PP。

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