论文标题

金属和超材料超晶格的光子透射率

Photonic transmittance in metallic and metamaterial Superlattices

论文作者

Pereyra, Pedro

论文摘要

我们在这里提出了电磁波通过金属和左手介质的分层结构的传播。基于有限周期系统的理论,我们表明,除了频率$ω$ $ω_p$的频率$ω$外,单个导体板的低传输特性除了强大的影响外,它在该域中也很高。同样,单个左手平板的完善的传输系数变得高度谐振,并在具有多个单位电池的超晶格中具有超光效应。我们通过$λ/4 $光子超级晶格确定波数据包的时空演变,其传输系数是一系列具有负相位时间的隔离和等距峰的序列。我们表明,高斯波包包的时空演变(在这些峰值中的任何一个都具有质心)与理论预测一致,并且不违反因果原理。 我们表明,除了发射机角的强大影响外,散装等离子体模式的相干耦合和界面表面等离子体偏振子导致振荡的传输系数,并且取决于超级突出的单位电池数量的奇偶校验,超级曲线的数量$ n $,传输量消失或amplifies the Oddowndor wide the the the Oddictor wides增加。我们通过$λ/4 $光子超级晶格确定波数据包的时空演变,其带宽变得可以忽略不计,并且传输系数变成了带有负相时的隔离和等距峰的序列。我们表明,高斯波包包的时空演变,其中任何一个峰处的质心都与理论预测一致,并且不违反因果关系原则。

We present here the transmission of electromagnetic waves through layered structures of metallic and left-handed media. Based on the theory of finite periodic systems, we show that besides the strong influence of the incidence angle, the low transmission characteristic of a single conductor slab, for frequencies $ω$ below the plasma frequency $ω_p$, becomes in this domain highly oscillating. Similarly, the well-established transmission coefficient of a single left-handed slab becomes highly resonant with superluminal effects in superlattices with more than one unit cell. We determine the space-time evolution of a wave packet through the $λ/4$ photonic superlattice whose transmission coefficient is a sequence of isolated and equidistant peaks with negative phase times. We show that the space-time evolution of a Gaussian wave packet, with centroid at any of these peaks, agrees with the theoretical predictions, and no violation of the causality principle occurs. We show that besides the strong influence of the incidence angle, the coherent coupling of the bulk plasmon modes and the interface surface plasmon polaritons lead to oscillating transmission coefficients, and depending on the parity of the number of unit cells $n$ of the superlattice, the transmission vanishes or amplifies as the conductor width increases. We determine the space-time evolution of a wave packet through the $λ/4$ photonic superlattice whose bandwidth becomes negligible, and the transmission coefficient becomes a sequence of isolated and equidistant peaks with negative phase times. We show that the space-time evolution of a Gaussian wave packet, with the centroid at any of these peaks, agrees with the theoretical predictions, and no violation of the causality principle occurs.

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