首页> 外文会议>Conference on Passive Components and Transmission Systems Nov 12-15, 2001, Beijing, China >Optimum design of arrayed waveguide grating based on a novel Newton recursive algorithm
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Optimum design of arrayed waveguide grating based on a novel Newton recursive algorithm

机译:基于牛顿递归算法的阵列波导光栅优化设计

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A novel Newton recursive algorithm is proposed for an optimum design of arrayed waveguide gratings, which is different from the traditional complicated power-series expansion of the light-path function. The structure of an arrayed waveguide grating is represented by three constraint equations which may be chosen to meet some specific design demands. The new algorithm combines Newton algorithm with structure nonlinear constraint functions, which makes it more general and flexible for the optimum design of the device. From the initial value given, the arrayed-waveguide positions and matched waveguide lengths are determined from the numerical solutions for the roots of three constraint equations through a Newton recursive procedure in sequence. Anastigmatic mounts of arrayed waveguide gratings based on this algorithm are processed, and a three stigmatic-points one is designed. Further applications of this algorithm are also discussed, including the one that can not be designed with the theory of the power-series expansion of light-path function.
机译:提出了一种新颖的牛顿递归算法,用于阵列波导光栅的优化设计,与传统的光路函数复杂的幂级数展开不同。阵列波导光栅的结构由三个约束方程式表示,可以选择这些约束方程式以满足某些特定的设计需求。新算法将牛顿算法与结构非线性约束函数结合在一起,从而使其对于设备的最佳设计更加通用和灵活。根据给定的初始值,依次通过牛顿递归程序,根据三个约束方程根的数值解确定阵列波导的位置和匹配的波导长度。处理了基于该算法的阵列波导光栅的无像角座,并设计了三个像点。还讨论了该算法的其他应用,包括无法用光路函数的幂级数展开理论设计的算法。

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