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Modal Propagation Analysis Method for the Design of MMI Coupler Based Microring Resonators

机译:基于MMI耦合器的微管谐振器设计的模态传播分析方法

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The multimode interference (MMI) coupler based microring resonator is a versatile component for photonic signal processing applications. Based on this basic building block, many functional devices can be fabricated such as optical switches, filters, modulators, add-drop multiplexers, and true time delay devices. In the analysis and design of such structures it is usually assumed that the MMI coupler is described by a 2 × 2 transfer matrix similar to that of a directional coupler. However, such a simple approximation is inadequate for a detailed design. The purpose of this paper is to present a more appropriate method for the analysis and design of MMI coupler based microring resonators. In this paper, the modal propagation method is used to determine the fields of the combination of an MMI coupler and a ring resonator. This method has the advantages of good accuracy, and quick computation compared with numerical methods such as FDTD and BPM. It is shown how the structure parameters such as the width and positions of access waveguides, width and length of the MMI coupler, and the waveguide geometry, can be optimized to allow the designer to achieve a prescribed performance. This method can be applied to more complicated structures such as the double ring resonator structure, a 3 × 3 MMI coupler based microring resonator, and microring resonators in series or parallel. The accuracy of the method is checked by comparison with numerical techniques.
机译:基于多模干扰(MMI)耦合器的微管谐振器是光子信号处理应用的多功能组件。基于该基本构建块,可以制造许多功能设备,例如光开关,滤波器,调制器,添加丢弃多路复用器和真实时间延迟设备。在这种结构的分析和设计中,通常假设MMI耦合器由类似于定向耦合器的2×2传输矩阵描述。然而,这种简单的近似对于详细设计是不充分的。本文的目的是为基于MMI耦合器的微管谐振器提供更合适的方法进行分析和设计。在本文中,模态传播方法用于确定MMI耦合器和环谐振器的组合的字段。这种方法具有良好的准确度,与诸如FDTD和BPM之类的数字方法相比的快速计算。示出了如何优化诸如接入波导的宽度和位置,MMI耦合器的宽度和位置,以及波导几何形状的结构参数,以允许设计者实现规定的性能。该方法可以应用于更复杂的结构,例如双环谐振器结构,基于3×3mmi耦合器的微耦合谐振器,以及串联或并联的微管谐振器。通过与数值技术进行比较检查该方法的准确性。

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