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Electrically controllable terahertz square-loop metamaterial based on VO2 thin film

机译:基于VO2薄膜的电控太赫兹方环超材料

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摘要

An electrically controllable square-loop metamaterial based on vanadium dioxide (VO2) thin film was proposed in the terahertz frequency regime. The square-loop shaped metamaterial was adopted to perform roles not only as a resonator but also as a micro-heater for the electrical control of the VO2. A dual-resonant square-loop structure was designed to realize band-pass characteristics in the desired frequency band. The measured Q-factors of the basic and scaled-down metamaterials fabricated on VO2 thin films were 2.22 and 1.61 at the center frequencies of 0.44 and 1.14 THz in the passbands, respectively. The transmittances of the proposed metamaterial were successfully controlled by applying a bias voltage without an external heater. The measured transmittance on-off ratios of the metamaterials were over 40 at the center frequencies in the passbands. In the future, electrically controllable terahertz metamaterial based on VO2 metamaterial could be employed as high-performance active filters or sensors.
机译:提出了在太赫兹频率范围内基于二氧化钒(VO2)薄膜的电控方环超材料。采用方形超材料,不仅可以起到谐振器的作用,而且还可以作为微加热器来控制VO2。设计了双谐振方环结构以实现所需频带中的带通特性。在通带的中心频率分别为0.44和1.14 THz时,在VO2薄膜上制造的基本和按比例缩小的超材料的Q值分别为2.22和1.61。通过在不使用外部加热器的情况下施加偏置电压就可以成功地控制提出的超材料的透射率。在通带的中心频率处测得的超材料的透射率开/关比超过40。将来,基于VO2超材料的电可控太赫兹超材料可以用作高性能有源滤波器或传感器。

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