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Periodic Array of Subwavelength MEMS Cantilevers for Dynamic Manipulation of Terahertz Waves

机译:动态处理太赫兹波的亚波长MEMS悬臂的周期阵列

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摘要

We experimentally demonstrate the active manipulation of terahertz (THz) waves using a periodic array of electrostatically actuated subwavelength microelectromechanical system cantilevers, which effectively behave like a metamaterial. The design methodology for achieving desired ON- and OFF-state resonance frequencies through electromechanical optimization is presented. The microcantilever metamaterial has a switching range of 0.29 THz and a modulation depth of 60% at 0.59 THz. Utilizing metal layer thickness to optimize the devices, an improvement of 40% is achieved in switching range. The microcantilever metamaterials are highly miniaturized, extremely scalable, and electrically controlled with attractive electro-optic performance. Multiple cantilevers can be placed in a desired fashion to form complex unit cell geometry to realize advanced THz manipulation, such as polarization switching, bandwidth tunable filters, multicolor imagers, and so on. [2015-0090]
机译:我们实验性地证明了使用静电驱动的亚波长微机电系统悬臂的周期性阵列对太赫兹(THz)波进行的主动操纵,其行为像超材料。提出了通过机电优化实现所需的通态和关态共振频率的设计方法。微悬臂超材料的开关范围为0.29 THz,在0.59 THz时的调制深度为60%。利用金属层的厚度来优化器件,开关范围可提高40%。微悬臂超材料高度小型化,可扩展性极强,并通过电控技术具有诱人的电光性能。可以以所需的方式放置多个悬臂,以形成复杂的晶胞几何形状,以实现高级的THz操纵,例如偏振切换,带宽可调滤波器,多色成像仪等。 [2015-0090]

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