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Slowing light by exciting the fundamental degeneracy oscillatory mode in both plasmonic and all-dielectric waveguides with negative refractive indices

机译:通过激发具有负折射率的等离子和全介电波导中的基本简并振荡模式来减慢光速

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We demonstrate the slowing light effect by exciting the negative Goos-Hänchen effect originating from the fundamental degeneracy oscillatory mode within negative refractive waveguides (NRWs). In the work, we construct three kinds of metamaterial-base NRWs, including an anisotropic plasmonic waveguide operated at multiple incidences, a discrete dielectric metamaterial waveguide, and a monolithic tapered dielectric metamaterial waveguide, and all of them successfully present slowing and even stopping light effect. The experimental demonstration is further confirmed by scrutinizing the distributions of E-field and power flow in simulation. Moreover, the effective indices of the NRW are retrieved by the theoretical analysis and then are affirmed by finite element simulation. The experimental result agrees the two simulation results well and so does the theoretical analysis.
机译:我们通过激发源自负折射波导(NRWs)内基本简并振荡模式的负Goos-Hänchen效应来证明减慢光效应。在工作中,我们构造了三种基于超材料的NRW,包括以多次入射操作的各向异性等离子波导管,离散电介质超材料波导和单片锥形电介质超材料波导,它们都成功地表现出了减缓甚至停止光的效果。 。通过在仿真中仔细检查电场和功率流的分布,进一步证实了该实验演示。此外,通过理论分析检索了北威州的有效指标,然后通过有限元模拟确定了该指标。实验结果与两个仿真结果吻合得很好,理论分析也是如此。

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