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A Multimode Interference Star Coupler with S-Bend Waveguide

机译:具有S-Bend波导的多模接收星耦合器

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The finite difference beam propagating method (BPM) is one of the most powerful technique to investigate linear and nonlinear lightwave propagation phenomena in axially varying waveguides such as curvilinear directional couplers, branching and combining waveguides, S-shaped bend waveguides, and tapered waveguides. BPM is also quite important for the analysis of ultra short light pulse propagation in optical fibers. To date numerous algorithms for BPM have been proposed and successfully applied to a very wide class of dielectric optical waveguide structures. In this paper, we have analyzed the Multimode interference (MMI) star coupler by Beam Propagation Method (BPM) having S-bend waveguide. We have compared the MMI star coupler with the simple MMI coupler. It has been found that power distribution in all four output S-bend waveguide is almost identical, which reflects the desired result.
机译:有限差分光束传播方法(BPM)是在轴向变化的波导,诸如曲线方向耦合器,支化和组合波导,S形弯曲波导和锥形波导的轴向变化的波导中的线性和非线性光波传播现象中最强大的技术之一。 BPM对于在光纤中的超短光脉冲传播的分析也非常重要。 迄今为止,已经提出了许多用于BPM的算法,并成功地应用于一类非常广泛的介电光波导结构。 在本文中,我们已经通过具有S-Bend波导的光束传播方法(BPM)分析了多模干扰(MMI)星耦合器。 我们将MMI星耦合器与简单的MMI耦合器进行了比较。 已经发现,所有四个输出S弯曲波导的功率分布几乎相同,这反映了所需的结果。

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