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Complete Band Gaps in One-Dimensional Left-Handed Periodic Structures

机译:一维左旋周期结构中的完整带隙

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摘要

Artificially fabricated structures with periodically modulated parameters such as photonic crystals offer novel ways of controlling the flow of light due to the existence of a range of forbidden frequencies associated with a photonic band gap. It is believed that modulation of the refractive index in all three spatial dimensions is required to open a complete band gap and prevent the propagation of electromagnetic waves in all directions. Here we reveal that, in sharp contrast to what was known before and contrary to the accepted physical intuition, a one-dimensional periodic structure containing the layers of transparent left-handed (or negative-index) metamaterial can trap light in three-dimensional space due to the existence of a complete band gap.
机译:由于存在与光子带隙相关的一定范围的禁止频率,具有周期性调制参数的人工制造结构(例如光子晶体)提供了控制光流的新颖方法。据认为,需要在所有三个空间维度上调制折射率,以打开完整的带隙并防止电磁波在所有方向上的传播。在这里,我们发现与已知的物理直觉形成鲜明对比的是,与已知的物理直觉形成鲜明对比的是,包含透明左手(或负折射率)超材料层的一维周期性结构可以将光捕获在三维空间中由于存在完整的带隙。

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