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Arbitrary-ratio Power Splitter based on Nonlinear Multimode Interference Coupler

机译:基于非线性多模干扰耦合器的任意比率功率分配器

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We propose an ultra-compact multimode interference (MMI) power splitter based on nonlinear effects from simulations using nonlinear modal propagation analysis (NMPA) cooperation with finite difference Method (FDM) to access free choice of splitting ratio. Conventional multimode interference power splitter could only obtain a few discrete ratios. The power splitting ratio may be adjusted continuously while the input set power is varying by a tunable laser. In fact, using an ultra- compact MMI with a simple structure that is launched by a tunable nonlinear input fulfills the problem of arbitrary-ratio in integrated photonics circuits. Silicon on insulator (SOI) is used as the offered material due to the high contrast refractive index and Centro symmetric properties. The high-resolution images at the end of the multimode waveguide in the simulated power splitter have a high power balance, whereas access to a free choice of splitting ratio is not possible under the linear regime in the proposed length range except changes in the dimension for any ratio. The compact dimensions and ideal performance of the device are established according to optimized parameters. The proposed regime can be extended to the design of M×N arbitrary power splitters ratio for programmable logic devices in all optical digital signal processing. The results of this study indicate that nonlinear modal propagation analysis solves the miniaturization problem for all-optical devices based on MMI couplers to achieve multiple functions in a compact planar integrated circuit and also overcomes the limitations of previously proposed methods for nonlinear MMI
机译:我们提出了一种基于使用非线性模式传播分析(NMPA)协作的模拟的非线性多模干扰(MMI)功率分配器,与有限差分法(FDM)进行了可自由选择分裂比。传统的多模干扰功率分配器只能获得几个离散比率。当输入设定功率通过可调谐激光器变化时,可以连续调节功率分割比。事实上,使用具有由可调谐非线性输入发射的简单结构的超紧凑型MMI来满足集成光子电路中任意比的问题。由于高对比度折射率和中心对称性能,用作绝缘体上的硅(SOI)用作所提供的材料。模拟电源分路器中的多模波导末端的高分辨率图像具有高功率平衡,而在所提出的长度范围内的线性状态下,不可能访问分裂比的自由选择之外,除了维度的变化任何比例。根据优化的参数建立了设备的紧凑尺寸和理想性能。所提出的制度可以扩展到所有光学数字信号处理中的可编程逻辑器件的M×N任意电源分路器比的设计。该研究的结果表明,非线性模态传播分析基于MMI耦合器解决了基于MMI耦合器的全光器件的小型化问题,以实现紧凑的平面集成电路中的多个功能,并且还克服了先前提出的非线性MMI方法的限制

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