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DYNAMICAL FREQUENCY TUNING OF ELECTRIC AND MAGNETIC METAMATERIAL RESPONSE

机译:电磁和磁材料响应的动态频率调整

摘要

A geometrically modifiable resonator is comprised of a resonator disposed on a substrate, and a means for geometrically modifying the resonator. The geometrically modifiable resonator can achieve active optical and/or electronic control of the frequency response in metamaterials and/or frequency selective surfaces, potentially with sub-picosecond response times. Additionally, the methods taught here can be applied to discrete geometrically modifiable circuit components such as inductors and capacitors. Principally, controlled conductivity regions, using either reversible photodoping or voltage induced depletion activation, are used to modify the geometries of circuit components, thus allowing frequency tuning of resonators without otherwise affecting the bulk substrate electrical properties. The concept is valid over any frequency range in which metamaterials are designed to operate.
机译:几何可修改的谐振器包括设置在基板上的谐振器和用于对谐振器进行几何修改的装置。几何上可修改的谐振器可以实现超材料和/或频率选择表面中的频率响应的有源光学和/或电子控制,潜在地具有亚皮秒的响应时间。另外,此处教导的方法可以应用于离散的可几何修改的电路组件,例如电感器和电容器。原则上,使用可逆的光掺杂或电压感应的耗尽激活来控制电导率区域可用于修改电路组件的几何形状,从而允许谐振器进行频率调谐,而不会影响整体衬底的电性能。该概念在用于设计超材料的任何频率范围内均有效。

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