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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Slow light in photonic crystals waveguide constructed with symmetrically perturbed structure
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Slow light in photonic crystals waveguide constructed with symmetrically perturbed structure

机译:具有对称扰动结构的光子晶体波导中的慢光

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Symmetrically perturbed photonic crystal waveguide can be constructed by inserting perturbative dielectric rods into photonic crystal waveguide structure with whose rods' radius distributed according to a certain proportion. Slow light properties in this new structure are studied by using the plane wave expansion method (PWM). In this paper, schemes of adjusting radius of perturbative dielectric rods and adjusting the dielectric constant of perturbative dielectric rods are proposed to optimize slow light properties. The result shows that the scheme for adjusting radius of perturbative rods can realize larger average slow light bandwidth and efficiently control the NDBP value of the waveguide, but it contributes little to obtain smaller group velocity. The scheme for adjusting dielectric constant of perturbative rods can realize smaller group velocity, but can only obtain smaller slow light bandwidth and cannot efficiently enlarge NDBP value of waveguide. Both optimization schemes proposed in this paper realize group velocity that is two magnitudes smaller than the vacuum speed of light meanwhile maintaining large NDBP and low GVD region. Our results provide important theoretical basis for the potential application offered by symmetrically perturbed photonic crystal in future optical networks.
机译:可以通过将扰动的介质棒插入光子晶体波导结构中来构造对称扰动的光子晶体波导,光子晶体的波导棒的半径按一定比例分布。使用平面波扩展方法(PWM)研究了这种新结构中的慢光特性。为了优化慢光性能,提出了调整微扰介质棒半径和微扰介质棒介电常数的方案。结果表明,微扰杆半径的调整方案可以实现较大的平均慢光带宽,有效地控制了波导的NDBP值,但对减小群速度的贡献很小。调整微扰棒介电常数的方案可以实现较小的群速度,但只能获得较小的慢光带宽,不能有效地增大波导的NDBP值。本文提出的两种优化方案均实现了比光的真空速度小两个数量级的群速度,同时保持了较大的NDBP和较低的GVD区域。我们的研究结果为对称扰动光子晶体在未来的光网络中的潜在应用提供了重要的理论基础。

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