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Design of phased-array wavelength division multiplexers using multimode interference couplers

机译:使用多模干扰耦合器的相控阵波分复用器设计

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摘要

Novel designs for phased-array wavelength-division multiplexers based on self-imaging properties of multimode interference (MMI) couplers are presented. These devices, which operate on N equally spaced wavelength channels, consist of two MMI couplers connected by an array of N monomode waveguides. The MMI couplers function as power splitters/combiners, and the waveguide array is the dispersive element. The excellent characteristics of MMI couplers offer the possibility of designing small-size devices with low loss and with high uniformity among different channels. A general theoretical formulation for an N-channel multiplexer is presented, and a simple procedure for finding an optimum set of lengths for the array guides is given. We show that these multiplexers can function as N x N wavelength-selective interconnecting components. The simulated performance of three variations of a five-channel device, designed in a rib waveguide system, is given. It is demonstrated that sidelobes in the multiplexer spectral response can be suppressed by weighting the power samples in the array waveguides through appropriate design of a nonuniform MMI power splitter. (C) 1997 Optical Society of America.
机译:提出了基于多模干涉(MMI)耦合器自成像特性的相控阵波分复用器的新颖设计。这些设备在N个等间隔的波长通道上运行,由两个MMI耦合器组成,两个MMI耦合器由N个单模波导的阵列连接。 MMI耦合器用作功率分配器/组合器,而波导阵列是色散元件。 MMI耦合器的出色特性为设计尺寸小,损耗低且在不同通道之间具有较高一致性的设备提供了可能。提出了用于N通道多路复用器的一般理论公式,并给出了一个简单的过程,用于找到阵列波导的最佳长度集。我们表明,这些多路复用器可以充当N x N个波长选择性互连组件。给出了在肋形波导系统中设计的五通道设备的三种变型的仿真性能。结果表明,通过对非均匀MMI功率分配器进行适当设计,可以通过加权阵列波导中的功率样本来抑制多路复用器频谱响应中的旁瓣。 (C)1997年美国眼镜学会。

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