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Nondispersive optical activity of meshed helical metamaterials

机译:网格螺旋超材料的非色散光学活性

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摘要

Extreme optical properties can be realized by the strong resonant response of metamaterials consisting of subwavelength-scale metallic resonators. However, highly dispersive optical properties resulting from strong resonances have impeded the broadband operation required for frequency-independent optical components or devices. Here we demonstrate that strong, flat broadband optical activity with high transparency can be obtained with meshed helical metamaterials in which metallic helical structures are networked and arranged to have fourfold rotational symmetry around the propagation axis. This nondispersive optical activity originates from the Drude-like response as well as the fourfold rotational symmetry of the meshed helical metamaterials. The theoretical concept is validated in a microwave experiment in which flat broadband optical activity with a designed magnitude of 45 degrees per layer of metamaterial is measured. The broadband capabilities of chiral metamaterials may provide opportunities in the design of various broadband optical systems and applications.
机译:极端的光学特性可以通过由亚波长尺度金属谐振器组成的超材料的强谐振响应来实现。但是,由于强烈的共振而导致的高度分散的光学特性阻碍了与频率无关的光学组件或设备所需的宽带操作。在这里,我们证明,网状的螺旋超材料可以实现具有高透明度的强而平坦的宽带光学活动,其中金属螺旋结构被网状排列并围绕传播轴具有四重旋转对称性。这种非分散的光学活性源自网状螺旋超材料的类德鲁德响应和四重旋转对称性。该理论概念在微波实验中得到了验证,该微波实验测量了每层超材料的设计幅度为45度的平坦宽带光学活动。手性超材料的宽带能力可能为各种宽带光学系统和应用的设计提供机会。

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