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Subpicosecond pulse compression in nonlinear photonic crystal waveguides based on the formation of high-order optical solitons

机译:基于高阶孤子形成的非线性光子晶体波导中的亚皮秒脉冲压缩

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摘要

We investigate by numerical simulation the compression of subpicosecond pulses in two-dimensional nonlinear photonic crystal (PC) waveguides. The compression originates from the generation of high-order optical solitons through the interplay of the huge group-velocity dispersion and the enhanced self-phase modulation in nonlinear PC waveguides. Both the formation of Bragg grating solitons and gap solitons can lead to efficient pulse compression. The compression factors under different excitation power densities and the optimum length for subpicosecond pulse compression have been determined. As a compressor, the total length of the nonlinear PC waveguide is only ten micrometres and therefore can be easily incorporated into PC integrated circuits.
机译:我们通过数值模拟研究二维非线性光子晶体(PC)波导中亚皮秒脉冲的压缩。压缩源自高阶光孤子的产生,其通过巨大的群速度色散和非线性PC波导中增强的自相位调制之间的相互作用来实现。布拉格光栅孤子和间隙孤子的形成都可以导致有效的脉冲压缩。确定了不同激励功率密度下的压缩因子以及亚皮秒脉冲压缩的最佳长度。作为压缩机,非线性PC波导的总长度仅为10微米,因此可以很容易地并入PC集成电路中。

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