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Dirichlet-to-Neumann map method for analyzing interpenetrating cylinder arrays in a triangular lattice

机译:三角格中互穿圆柱阵列的Dirichlet-Neumann映射方法

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An efficient numerical method is developed for computing the transmission and reflection spectra of finite two-dimensional photonic crystals composed of circular cylinders in a triangular lattice. Our method manipulates a pair of operators defined on a set of curves, and it remains effective when the radius of the cylinders is larger than root 3/4 of the lattice constant-a condition where different arrays of cylinders cannot be separated by planes without intersecting the cylinders. The method is efficient since it never calculates the wave field in the interiors of the (hexagon) unit cells and it approximates the operators by small matrices. This is achieved by using the Dirichlet-to-Neumann (DtN) maps of the unit cells, which map the wave field on the boundaries of the unit cells to its normal derivative. (C) 2008 Optical Society of America
机译:开发了一种有效的数值方法,用于计算由三角形晶格中的圆柱组成的有限二维光子晶体的透射和反射光谱。我们的方法操纵在一组曲线上定义的一对算子,并且当圆柱体的半径大于晶格常数的根3/4时,该方法仍然有效-一种情况,其中圆柱体的不同阵列不能通过平面分开而不相交气缸。该方法是有效的,因为它从不计算(六边形)晶胞内部的波场,并且它通过小矩阵近似算子。这是通过使用晶胞的Dirichlet-to-Neumann(DtN)映射实现的,该映射将晶胞边界上的波场映射为其法线导数。 (C)2008年美国眼镜学会

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