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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Ultrafast all-optical switching in one-dimensional semiconductor-polymer hybrid nonlinear photonic crystals with relaxing Kerr nonlinearity
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Ultrafast all-optical switching in one-dimensional semiconductor-polymer hybrid nonlinear photonic crystals with relaxing Kerr nonlinearity

机译:具有松弛Kerr非线性的一维半导体-聚合物杂化非线性光子晶体中的超快全光切换

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摘要

The achievement of ultrafast all-optical switching on chip is a fundamental issue of all-optical integration. A feasible and promising method for this is to combine semiconductor photonic crystals with highly nonlinear polymer materials to form the hybrid nonlinear photonic crystal. In this paper we numerically investigate the femtosecond dynamic response of all-optical switching based on the effect of band gap edge shift in one-dimensional (1D) semiconductorpolymer hybrid nonlinear photonic crystal (NPC) structures. Taking into account the Kerr relaxation time of the polymer and semiconductor materials simultaneously, the introduction of highly nonlinear polymer materials with femtosecond relaxation time can realize all-optical switching in the femtosecond range in spite of the low response speed of the semiconductor materials. The physical origin is the large and ultrafast response Kerr nonlinearity of the polymer materials and this is proved by examining the dependence of switching time on the relaxation speed of the polymer materials. The results can be extended to 2D and 3D NPC structures.
机译:超快全光片上切换的实现是全光集成的基本问题。一种可行且有前途的方法是将半导体光子晶体与高度非线性的聚合物材料结合起来以形成混合非线性光子晶体。在本文中,我们基于一维(1D)半导体聚合物混合非线性光子晶体(NPC)结构中的带隙边缘偏移效应,对全光开关的飞秒动态响应进行了数值研究。同时考虑到聚合物和半导体材料的Kerr弛豫时间,尽管半导体材料的响应速度较低,但引入具有飞秒弛豫时间的高度非线性聚合物材料仍可以在飞秒范围内实现全光切换。物理原因是聚合物材料的大且超快速响应的Kerr非线性,这通过检查切换时间对聚合物材料弛豫速度的依赖性来证明。结果可以扩展到2D和3D NPC结构。

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