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Large chiro-optical effect in stacked chiral metamaterials

机译:堆叠手性超材料中的大手性光学效应

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Plasmonic nanostructures in chiral geometries are suitable candidates for various device applications pertaining to optical polarization. These devices can show large chiro-optical effects, implying a strongly differential response to right and left circularly polarized light. In general, three-dimensional plasmonic structures show larger optical activity, but are typically not suitable for wafer-scale fabrication. As an alternate strategy, we have considered the optical response of stacked planar chiral geometries, which were found to exhibit very large chiro-optical response. Further, the plasmonic chirality of such stacked metamaterials can be tuned in the visible, by simply varying the thickness of the stack. This novel design of layered achiral metamaterials will be easier to fabricate than standard three dimensional geometries, and is suitable for various photonic device applications requiring polarization control.
机译:手性几何形状的等离子纳米结构是与光偏振有关的各种设备应用的合适候选者。这些设备可以显示出较大的手光学效应,这意味着对左右圆偏振光的响应非常强。通常,三维等离激元结构显示较大的光学活性,但通常不适合晶圆级制造。作为一种替代策略,我们考虑了堆叠的平面手性几何结构的光学响应,发现它们表现出非常大的手性光学响应。此外,通过简单地改变堆叠的厚度,可以在可见光中调整这种堆叠的超材料的等离子体手性。分层的非手性超材料的新颖设计将比标准的三维几何结构更容易制造,并且适用于需要偏振控制的各种光子器件应用。

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