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Simulation and computer aided design of large-scale photonic integrated circuits using the beam propagation method (BPM)

机译:使用束传播方法(BPM)的大型光子集成电路的仿真和计算机辅助设计

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In this paper we briefly review the approach and capabilities of the BPM method, and its applications to photonic devices and largescale PICs such as arrayed-waveguide-grating WDMs. Many numerical and analytical techniques have been developed for optical waveguide modeling. After briefly surveying these techniques, the talk will focus on the finite-difference BPM and the problems to which it can be applied. The method allows efficient simulation in 2D or 3D, can incorporate polarization via both semi- and full-vectorial approaches, can handle anisotropic media, nonlinear effects, and wide-angle circuits, and can perform mode solving as well as propagation calculations. As a specific example of the difficulties in treating large scale circuits, We give two approaches to the design of the arrayed-waveguide-grating based routers used in WDM sytems.
机译:在本文中,我们简要回顾了BPM方法的方法和功能,及其在光子设备和大规模PIC(如阵列波导光栅WDM)中的应用。已经开发出许多用于光波导建模的数值和分析技术。在简要地研究了这些技术之后,演讲将集中于有限差分BPM及其可以应用的问题。该方法可以在2D或3D中进行高效仿真,可以通过半矢量和全矢量方法合并极化,可以处理各向异性介质,非线性效应和广角电路,并且可以执行模式求解以及传播计算。作为处理大规模电路困难的一个具体示例,我们给出了两种设计WDM系统中使用的基于阵列波导光栅的路由器的方法。

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