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Assembling optically active and nonactive metamaterials with chiral units

机译:用手性单元组装光学活性和非活性超材料

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Metamaterials constructed with chiral units can be either optically active or nonactive depending on the spatial configuration of the building blocks. For a class of chiral units, their effective induced electric and magnetic dipoles, which originate from the induced surface electric current upon illumination of incident light, can be collinear at the resonant frequency. This feature provides significant advantage in designing metamaterials. In this paper we concentrate on several examples. In one scenario, chiral units with opposite chiralities are used to construct the optically nonactive metamaterial structure. It turns out that with linearly polarized incident light, the pure electric or magnetic resonance (and accordingly negative permittivity or negative permeability) can be selectively realized by tuning the polarization of incident light for 90°. Alternatively, units with the same chirality can be assembled as a chiralmetamaterial by taking the advantage of the collinear induced electric and magnetic dipoles. It follows that for the circularly polarized incident light, negative refractive index can be realized. These examples demonstrate the unique approach to achieve certain optical properties by assembling chiral building blocks, which could be enlightening in designing metamaterials.
机译:用手性单元构造的超材料可以是光学活性的,也可以是非活性的,这取决于构件的空间配置。对于一类手性单元,它们的有效感应电偶极子和磁偶极子可以在共振频率处共线,这些偶极子源于入射光照射时的感应表面电流。此功能在设计超材料时具有明显的优势。在本文中,我们集中于几个示例。在一种情况下,具有相反手性的手性单元用于构建光学非活性超材料结构。事实证明,对于线性偏振的入射光,可以通过将入射光的偏振调整90°来有选择地实现纯电子或磁共振(以及相应的负介电常数或负磁导率)。或者,可以利用共线感应的电和磁偶极子的优势,将具有相同手性的单元组装为手性金属材料。由此可见,对于圆偏振入射光,可以实现负折射率。这些示例演示了通过组装手性构件来实现某些光学特性的独特方法,这在设计超材料时可能会有所启发。

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