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Highly strained compliant optical metamaterials with large frequency tunability

机译:具有高频率可调谐性的高应变顺应性光学超材料

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摘要

Metamaterial designs are typically limited to operation over a narrow bandwidth dictated by the resonant line width. Here we report a compliant metamaterial with tunability of Δλ ~ 400 nm, greater than the resonant line width at optical frequencies, using high-strain mechanical deformation of an elastomeric substrate to controllably modify the distance between the resonant elements. Using this compliant platform, we demonstrate dynamic surface-enhanced infrared absorption by tuning the metamaterial resonant frequency through a CH stretch vibrational mode, enhancing the reflection signal by a factor of 180. Manipulation of resonator components is also used to tune and modulate the Fano resonance of a coupled system.
机译:超材料设计通常限于在由谐振线宽决定的窄带宽上工作。在这里,我们报告了一种可调谐的超材料,其可调谐性为Δλ〜400 nm,大于光频率下的共振线宽度,使用弹性体基板的高应变机械变形来可控地改变共振元件之间的距离。使用这个兼容的平台,我们通过CH拉伸振动模式调谐超材料的共振频率,并通过将反射信号增强180倍,展示了动态表面增强的红外吸收。共振器组件的操纵也用于调谐和调制Fano共振耦合系统。

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