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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Improvement of power coupling in a nonlinear photonic crystal directional coupler switch
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Improvement of power coupling in a nonlinear photonic crystal directional coupler switch

机译:非线性光子晶体定向耦合器开关中功率耦合的改进

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In this paper we try to improve the control signal coupling for a two dimensional all-optical photonic crystal switch, so as to minimize the unwanted control signal reflection. The switch is based on a directional coupler in a triangular lattice of GaAs rods with Kerr optical nonlinearity. Not only can impedance matching affect the characteristics of a switch, but also the unwanted reflection due to poor impedance matching can be a real nuisance in integrated circuits. Since the control signal has usually a low group velocity, matching in control path has also a significant role in reducing operational power. Two dimensional FDTD and PWE methods are used for analyzing the structures. Simulation results show improvement in switching speed and operational power for the proposed structure. The low reflection coefficient for the control signal makes the switch suitable for all-optical integration purposes.
机译:在本文中,我们试图改善二维全光子光子晶体开关的控制信号耦合,以最大程度地减少不必要的控制信号反射。该开关基于具有Kerr光学非线性的GaAs棒的三角形晶格中的定向耦合器。阻抗匹配不仅会影响开关的特性,而且由于阻抗匹配不良而引起的有害反射也会成为集成电路中的实际障碍。由于控制信号通常具有较低的组速度,因此控制路径中的匹配在降低操作功率方面也起着重要作用。二维FDTD和PWE方法用于分析结构。仿真结果表明,所提出结构的开关速度和工作功率均有所提高。控制信号的低反射系数使该开关适合于全光集成。

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