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TE Modal Dispersion in Dielectric Slab Waveguide with Lossy Left-Handed Metamaterial

机译:有损耗左手超材料的介质平板波导中的TE模态色散

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In this work, we derived the modal dispersion relation for TEm modes for a symmetric slab waveguide constructed from SiO2 dielectric guiding core material with lossy left-handed material (LHM) as cladding and substrate, and the power confinement factor. The dispersion relations and the power confinement factor were numerically solved for a given set of parameters: allowed frequency range; core’s thicknesses; and TEm mode order. We found that the real part of the effective refractive index decreased with thickness and frequency increase. Moreover, the imaginary part (extinction coefficient) of the effective refractive index has very small values for all thickness in the frequency ranges, which means the waveguide structure is transparent for the used frequencies. The waveguide structure offers good guiding power for all thickness in the frequency range with low power attenuation. The real part of the effective refractive index increases with the increase of mode order, and the power confinement factor decreases with the increase of mode order.
机译:在这项工作中,我们推导了以SiO2介电导芯材料(有损左手材料(LHM)作为包层和衬底)构造的对称平板波导的TEm模的模态色散关系,以及功率限制因子。对于给定的参数集,对色散关系和功率限制因子进行了数值求解:允许的频率范围;芯的厚度;和TEm模式顺序。我们发现有效折射率的实部随厚度和频率的增加而降低。而且,有效折射率的虚部(消光系数)对于频率范围内的所有厚度具有非常小的值,这意味着波导结构对于所使用的频率是透明的。波导结构在低功率衰减的情况下为频率范围内的所有厚度提供了良好的引导功率。有效折射率的实部随模式阶数的增加而增加,而功率限制因数随模式阶数的增加而减小。

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