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Efficient tunability and circuit model of nested-U nanoresonators in optical metasurfaces

机译:嵌套u纳米孔中的高效可调性和电路模型

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Tunable metasurfaces can be employed to physically or mechanically engineer and control electromagnetic wave properties like reflection and transmission and their associated spectral characteristics like resonance frequency. Here, we propose highly tunable and sensitive metasurfaces composed of an array of a nested double U-shaped (NDU) nanoresonators on elastic polydimethylsiloxane substrate, operating in infrared region. The mechanical deformation varies the spaces between the coupled resonator elements which in turn leads to corresponding variations in the equivalent capacitance and inductance between the U-shaped elements causing efficient tunability. In addition to the higher signal strengths, it is also reported that the resonant frequency of the proposed metasurface exhibits substantial spectral shift. The observed remarkable trends are adequately verified by the developed equivalent circuit model for the proposed NDU-structure.
机译:可调谐元件可以用于物理或机械工程师和控制电磁波特性,如反射和传输,以及它们相关的频谱特性,如共振频率。 这里,我们提出了由弹性聚二甲基硅氧烷基材上的嵌套双U形(NDU)纳米族剂的阵列组成的高度可调谐和敏感的元胶,在红外区域操作。 机械变形在耦合的谐振器元件之间改变空间,该空间又导致的相应电容和U形元件之间的电感变化,从而导致有效的可调性。 除了较高的信号强度之外,还报道了所提出的元表面的谐振频率表现出实质性的光谱移位。 所观察到的显着趋势是由所提出的NDU结构的相同电路模型充分验证。

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