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Investigation of Photonic Band Gaps of One-Dimensional Heterostructure Magnetic Photonic Crystals

机译:一维异质结构磁力光子晶体光子带间隙的研究

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Multiple structures in one-dimensional photonic crystals have great potentials for ultrawide omnireflectors and tunable switches. In this paper, we study the propagation of electromagnetic waves in a one-dimensional heterostructure magnetic photonic crystal for both TE and TM incidence polarizations by means of the transfer matrix method. Results show that by stacking two magnetic photonic crystals as a heterostructure magnetic photonic crystal the omnidirectional total reflection frequency range for any polarization enlarged due to overlapping of photonic band gaps of both magnetic photonic crystals. Omnidirectional band gaps in the heterostructure magnetic photonic crystal is enhanced rather than that in a single magnetic: photonic crystal.
机译:一维光子晶体中的多个结构具有极大的Ultrawide Omnirefleentors和可调谐开关的潜力。在本文中,我们通过转移矩阵法研究了TE和TM入射率偏振的一维异质结构磁性光子晶体中的电磁波的传播。结果表明,通过将两个磁性光子晶体堆叠为异质结构磁性光子晶体,由于两种磁性光子晶体的光子带间隙重叠而扩大的任何偏振的全反射频率范围。异质结构磁性光子晶体中的全向带间隙增强而不是单磁性:光子晶体中的。

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