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Calculation of the spectral response of an arrayed-waveguide gating demultiplexer with a wide-angle beam propagation method in a cylindrical coordinate system

机译:圆柱坐标系中用广角波束传播法计算阵列波导门多路分解器的频谱响应

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摘要

The spectral response of an arrayed-waveguide grating (AWG) demultiplexer is calculated by simulating the field propagation in the output section of an AWG with a wide-angle beam propagation method (BPM) in a cylindrical coordinate system. As in a practical design of an AWG demultiplexer, each output waveguide consists of two straight sections connected by a bending section. The spectral response obtained by the present algorithm is more accurate than those obtained with two popular approximate methods, namely, the conventional overlapped integral method and the standard BPM for radially straight and infinitely long output waveguides. With the present algorithm, the dependence of the spectral response on the parameters of the output section is analyzed. The channel crosstalk and the 3 dB passband width of the spectral response depend mainly on the length of the first straight section, the end separation and the angular separation of the output waveguides. The bending section results in an asymmetrical spectral response with remarkable sidelobes which can be reduced by increasing the bending radius.
机译:阵列波导光栅(AWG)解复用器的光谱响应是通过在圆柱坐标系中使用广角光束传播方法(BPM)模拟AWG输出部分中的场传播来计算的。像在AWG多路分解器的实际设计中一样,每个输出波导都包含两个通过弯曲部分连接的笔直部分。通过本算法获得的光谱响应比通过两种流行的近似方法获得的光谱响应更准确,这两种方法是常规的重叠积分法和用于径向直线和无限长输出波导的标准BPM。使用本算法,分析了光谱响应对输出部分参数的依赖性。通道串扰和频谱响应的3 dB通带宽度主要取决于第一直线部分的长度,输出波导的端部间隔和角度间隔。弯曲部分会导致不对称的光谱响应,并带有明显的旁瓣,可以通过增加弯曲半径来减小它。

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