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Active modulation and switching of toroidal resonance in micromachined reconfigurable terahertz metamaterials

机译:Micromachined可重构太赫兹超材料中环形共振的主动调制与切换

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In recent years, the toroidal dipole has attracted growing interests due to its unique electromagnetic radiation properties and great potential applications. However, active control of the toroidal resonance at the terahertz frequency has remained largely unexplored due to the scarcity of compact tunable elements so far. Here, dynamic control of the toroidal resonance in a micromachined reconfiguration terahertz metamaterial is proposed and demonstrated numerically. Simulated results show that for TE wave, the intensity and operating mode of the toroidal resonance can be actively controlled through driving micromachined structure.Furthermore, switching between a dual resonance and a single resonance is also realized for TM wave. Therefore, the works open on the opportunities for controlling the electromagnetic responses in free space and designing the terahertz modulators, ultrasensitive sensors and switchable devices.
机译:近年来,由于其独特的电磁辐射性能和巨大的潜在应用,环形偶极子引起了日益增长的利益。然而,由于迄今为止紧凑的可调谐元件的稀缺性,Terhertz频率的环形共振的主动控制在很大程度上是由于狭小的可调谐元件的稀缺而未开发。这里,提出了在数值上提出和说明了微加工重新配置中的环形共振的动态控制。模拟结果表明,对于TE波,可以通过驱动微机械结构来主动控制环形谐振的强度和操作模式。加热,双谐振和单个谐振之间的切换也用于TM波。因此,该工作对自由空间中的电磁响应进行控制并设计太赫兹调制器,超敏传感器和可切换器件的机会开放。

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