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An Ultra Small Optical Switch Design Based on Directional Coupler in Two-dimensional Photonic Crystals

机译:基于二维光子晶体定向耦合器的超小型光学开关设计

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We theoretically investigate an ultra small structure with directional coupler (DC) in a two dimensional (2D) photonic crystal (PhC)for realizing the switching phenomenon. In this design, triangular lattice of air holes in dielectric matrix is utilized. The DC is formed by creating two straight line defect waveguides, separated by single row of air holes. We showed that by adjusting the size of the air holes between both the two waveguides, the input signal beam can be switched to a different output ports with a response timeless than 2ps. Difference Time Domain (FDTD) technique is used to simulate the power-time switching curves. The advantages of this method are high stability and accuracy in computations. The total size of the proposed switch is 31.85μm2 which is highly suitable for Photonic Integrated Circuits (PICs).
机译:理论上,在二维(2D)光子晶体(PHC)中具有定向耦合器(DC)的超小结构,用于实现切换现象。在这种设计中,利用了介电基质中的空气孔的三角晶格。通过产生两个直线缺陷波导,通过单行空气孔分开而形成DC。我们示出了通过调节两个波导之间的空气孔的尺寸,输入信号光束可以与响应而不是2ps的响应切换到不同的输出端口。差分时域(FDTD)技术用于模拟功率时切换曲线。该方法的优点是计算中的高稳定性和准确性。所提出的开关的总大小为31.85μm 2 这适用于光子集成电路(图片)。

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