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Nano-optical waveguide modes in gaps embedded in left-handed metamaterial

机译:左手超材料中嵌入的缝隙中的纳米光学波导模式

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We explored backward waves propagating predominantly in a regular dielectric or even a vacuum. These modes emerge when a dielectric gap is made in a left-handed material, also known as a negative index material. As the gap becomes nanometric in size, the modal pattern conforms with surface waves distribution and can exhibit either (or both) right-handed or left-handed characteristics. Interestingly, the details of the modal field in the gap is reminiscent of the plasmon polariton solutions of either a gap in metals (forward propagating) or a metal slab in a dielectric bulk (backward propagating). Subsequently, we examined a specific metamaterial realization of the left-handed optical medium by use of elongated nanometallic inclusions to generate positive-negative waveguide anisotropy. We used this metamaterial embedded between dielectric layers as the cladding layer of a gap and verified that the important results predicted above, namely nanometric-size backward waves, are obtained for this specific implementation.
机译:我们探索了主要在规则电介质甚至真空中传播的反向波。当在左手材料(也称为负折射率材料)中制作介电间隙时,会出现这些模式。随着间隙尺寸变为纳米级,模态图案与表面波分布一致,并且可以显示右手或左手特性中的一个(或两个)。有趣的是,间隙中模态场的细节使人联想到金属间隙中的等离激元极化子解(正向传播)或介电体中的金属平板(向后传播)。随后,我们通过使用细长的纳米金属夹杂物来产生正负波导各向异性,研究了左旋光学介质的特定超材料实现。我们使用嵌入在介电层之间的这种超材料作为间隙的包覆层,并验证了针对该特定实现方案获得了上面预测的重要结果,即纳米尺寸的后向波。

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