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Eigencurrent expansion and linear embedding via Green's operators applied to design optimization of devices in electromagnetic band-gap structures

机译:通过Green运算符的本征展开和线性嵌入可用于电磁带隙结构中器件的设计优化

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We present an efficient formulation based on the linear embedding via Green''s operators (LEGO) and the eigencurrent expansion method to optimize composite wave interaction structures, e.g., photonic-crystal based devices. In LEGO, a composite structure is broken up into "bricks" that are characterized through scattering operators and the interaction among them is captured using transfer operators. By exploiting this diakoptic nature of LEGO, we show how the optimization is accomplished using an effective operator defined over the bricks (usually few) enclosing the space where the fields are sampled. This operator encompasses the effect of the surrounding and separates the domain to be optimized from the fixed one, enabling us to carry out the optimization with little computational effort.
机译:我们提出了一种基于Green算子(LEGO)的线性嵌入和本征流扩展方法的有效公式,以优化复合波相互作用结构,例如基于光子晶体的器件。在乐高中,复合结构被分解为“砖块”,这些砖块通过散射算子来表征,并使用传递算子捕获它们之间的相互作用。通过利用乐高的这种透光性,我们展示了如何使用有效的算子对砖块(通常是很少的)进行定义,该算子包围了采样场的空间,该算子通常是很少的。该运算符包含了周围的影响,并将要优化的域与固定域分开,使我们能够以很少的计算工作来执行优化。

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