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The transmission properties of one-dimensional photonic crystals containing indefinite metamaterials

机译:含有无限超材料的一维光子晶体的传动特性

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The transmission properties of the one-dimensional photonic crystal (1DPC) containing indefinite metamaterials are theoretically studied. It is showed that the 1DPCs can possess a similar zero average index (zero-̄n.) gaps, the edges of the zero-̄n gap are weakly dependent on the incident angle, scale length and the polarization of electromagnetic wave. When an impurity is introduced, a defect mode appears inside the zero-̄n gap with a very weak dependence on incident angle. A transmitted light pulse in such photonic crystals can experience a positive or negative group delay and hence a subluminal, ultraslow or superluminal propagation with small distortions at different frequency point such as at the lower gap edge, at the defect mode and in the bandgap, respectively.
机译:理论上研究了含有无限超材料的一维光子晶体(1DPC)的传动特性。结果表明,1DPC可以具有类似的零平均指数(零̄N。)间隙,零̄N间隙的边缘弱依赖于电磁波的入射角,刻度长度和偏振。当引入杂质时,在零̄N间隙内出现缺陷模式,其依赖性非常弱。这种光子晶体中的透射光脉冲可以经历正或负组延迟,因此在缺陷模式和带隙处,在诸如在下间隙边缘处的不同频率点处具有小变形的阳性或负组延迟,并且在缺陷模式下和带隙处的小频率下降。

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