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Out-of-plane band structure of a two-dimensional dispersive photonic crystal

机译:二维色散光子晶体的平面外带结构

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We calculated the out-of-plane band structure of a two-dimensional dispersive photonic crystal (PC). To achieve this goal, the plane wave expansion method was implemented in conjunction with a numerical algorithm, the dispersive photonic crystal iterative method. The PC is an array of circular cross-sectional dispersive MgO Lorentz single-pole rods in a square lattice. The frequency bands are calculated starting at r as a function of the oblique component of the wave vector. For the lowest frequencies, it was found that the modes bend drastically to the horizon as the dielectric constant epsilon(omega) is increased to a very positive value. For frequencies above the longitudinal optical phonon circular frequency, where epsilon(omega) has very low positive values, the expected degeneration occurs in the transparency window, and a line of modes behaves close to the line of light. (C) 2018 Optical Society of America.
机译:我们计算了二维色散光子晶体(PC)的平面外带结构。 为了实现这一目标,平面波扩展方法与数值算法,分散光子晶体迭代方法结合实施。 PC是一系列圆形横截面分散MgO Lorentz单极杆的阵列。 以R的函数开始计算频带作为波向量的倾斜分量的函数。 对于最低频率,发现随着介电常数ε(Omega)被增加到地平线的模式弯曲到非常正值。 对于高于纵向光学声子圆频率的频率,其中epsilon(ω)具有非常低的正值,在透明窗口中发生预期变性,并且一线模式的行为靠近光线。 (c)2018年光学学会。

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