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Design of novel 1×4 power splitter by directional coupling between photonic crystal waveguides

机译:通过光子晶体波导之间的定向耦合设计新型1×4功率分配器

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In the design process of a novel photonic crystal 1×4 power splitter, the coupling of three parallel photonic crystal waveguides can be considered as a multimode interference system in the two-dimensional square photonic crystal, the positions of output waveguides are decided by the positions of periodic twofold image which are formed by the self-imaging effect of multimode interference. The identical output optical power in each output port of the device can be realized by inserting dielectric rod E and F in the junction between the multimode waveguides and lateral single-mode output waveguides. The transmission characteristics of the splitter are investigated by using the finite-difference time-domain method. The results show that the transmittance of this splitter can be as high as 95.4% for λ=1.55μm when the radius of the inserted dielectric rods of E and F is 0.34r.
机译:在新型光子晶体1×4功率分配器的设计过程中,可以将三个平行光子晶体波导的耦合视为二维方形光子晶体中的多模干涉系统,输出波导的位置由位置决定由多模干涉的自成像效应形成的周期性双重图像。通过在多模波导和横向单模输出波导之间的连接处插入电介质棒E和F,可以在设备的每个输出端口中实现相同的输出光功率。利用时域有限差分法研究了分离器的传输特性。结果表明,当E和F插入的介电棒的半径为0.34r时,对于λ=1.55μm,该分束器的透射率可以高达95.4%。

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