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Higher-order soliton compression with pedestal suppression in nonlinear optical loop mirrors constructed from dispersion decreasing fibers

机译:由减少色散的光纤构成的非线性光学环形镜中具有基座抑制的高阶孤子压缩

摘要

Compression of higher-order solitons in nonlinear optical loop mirrors (NOLMs) constructed from dispersion decreasing fibers (DDFs) is investigated numerically. Results show that when compared to a soliton-effect pulse compressor in which only a piece of DDF is used, a NOLM constructed from a DDF not only suppresses pulse pedestals but also significantly reduces frequency chirps of the compressed pulse. Furthermore, since both compression and pedestal suppression are realized in the same loop, the novel compressor not only is simpler and more compact but also less affected by higher-order effects as compared with the recently reported techniques based on DDF. For a given input pulse, there is an optimum loop length at which the best trade-off among the compression factor, pulse quality, and output peak power can be obtained. The proposed scheme works well for a broad range of input soliton orders.
机译:数值研究了由色散减小光纤(DDF)构成的非线性光学环形镜(NOLM)中高阶孤子的压缩。结果表明,与仅使用一块DDF的孤子效应脉冲压缩器相比,由DDF构造的NOLM不仅抑制了脉冲基座,而且还显着降低了压缩脉冲的频率chi。此外,由于压缩和基座抑制都在同一个循环中实现,因此与最近报道的基于DDF的技术相比,该新型压缩器不仅更简单,更紧凑,而且不受高阶效应的影响。对于给定的输入脉冲,有一个最佳的环路长度,在该长度下可以获得压缩系数,脉冲质量和输出峰值功率之间的最佳折衷。拟议的方案很好地适用于各种输入孤子订单。

著录项

  • 作者

    Cao WH; Wai PKA;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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