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Dynamic modulation of wideband slow light with continuous group index in polymer-filled photonic crystal waveguide

机译:聚合物填充光子晶体波导连续群索引的宽带慢光动态调制

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摘要

The dynamic modulation of wide bandwidth and low-dispersion slow light with continuous variation of group index n(g) is realized in a polymer-filled photonic crystal waveguide (PF-PCW) with optimal structure. By adjusting the unified radius of air holes under a different refractive index of polymer in the first two rows of holes adjacent to the defect, the structure optimization of PF-PCW is first studied, then the fixed optimal structure is obtained. In the optimal photonic crystal waveguide with hole radius r(0) = 0.328a, a fixed refractive index n(1) = 1.74 of polymer in the first-row holes, and by adjusting refractive index n(2), the flattened wideband slow light with large normalized delay bandwidth product of group index from 17.15 to 55.65 has been demonstrated. Then, by filling polymer with electro-optic effect into the second-row holes, the dynamic modulation of the optimized slow light in PF-PCW is investigated. The simulation shows that the center operating frequency slightly shifts linearly to a higher one, and the average group index increases exponentially from 33.943 to 75.546 with a normalized delay bandwidth product larger than 0.3089 as the applied voltage increases. The modulation sensitivity of the average group index is about 0.3467/V when applied voltages vary from 0 V to 120 V. These results open the possibility for the dynamic control of slow light according to the practical requirements of flexibility and tunability. (C) 2017 Optical Society of America
机译:在具有最佳结构的聚合物填充的光子晶体波导(PF-PCW)中,实现了宽带宽和低色散慢光的动态调制和具有组指数N(G)的连续变化。通过在与缺陷相邻的前两排孔的聚合物的不同折射率下调整统一的空气半径,首先研究PF-PCW的结构优化,然后获得固定的最佳结构。在具有空穴半径R(0)= 0.328A的最佳光子晶体波导中,在第一排孔中的固定折射率N(1)= 1.74,并通过调节折射率N(2),扁平宽带慢速已经证明了具有大型归一化延迟带宽乘积的亮度,从17.15到55.65的射程带宽乘积。然后,通过将聚合物用电光效应填充到第二排孔中,研究了PF-PCW中优化的慢光的动态调制。模拟表明,中心工作频率略微偏移到较高的位置,平均组索引从33.943到75.546呈指数级增大,其归一化延迟带宽产品大于0.3089,因为施加的电压增加。当施加电压从0 V至120V变化时,平均组索引的调制灵敏度为约0.3467 / v.这些结果打开了根据灵活性和可调性的实际要求对慢光动态控制的可能性。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第35期|共8页
  • 作者单位

    Qingdao Univ Sch Elect &

    Informat Engn Qingdao 266071 Peoples R China;

    Qingdao Univ Sch Elect &

    Informat Engn Qingdao 266071 Peoples R China;

    Qingdao Univ Coll Phys Qingdao 266071 Peoples R China;

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  • 正文语种 eng
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