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Dual control of multi-band resonances with a metal–halide perovskite-integrated terahertz metasurface

机译:金属-卤化物钙钛矿集成太赫兹超表面的多波段共振的双重控制

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The phenomenon of multi-resonant Fano resonances is important for the design of biosensors and communication fields. There are very few studies reporting the multi-band Fano resonance metamaterials with more than three resonance frequencies, or the tunable optical metamaterials to control the multi-band Fano resonance characteristics. Here, we report dual control of multi-band Fano resonances with a metal–halide perovskite-integrated terahertz metasurface by lasers and an electrical field. By tuning the conductivity of the perovskite film on the metasurface, ultrasensitive optoelectronic modulation was achieved. The terahertz transmission amplitude exhibited increasing and decreasing stages. We analyzed the physical phenomena and found that capacitance effects and Fermi-level enhancement had significant roles in the optical- and electronic-modulation experiments. The resonant frequencies in the electronic modulation had broader frequency shifts and a higher and wider tunable modulation depth range. More importantly, the maximum modulation depth was as high as 197, with a significant fluctuation in the amplitude and more unstable frequency shifts in the transmission spectra.
机译:多谐法诺共振的现象生物传感器的设计和重要吗通信领域。报告多波段法诺共振超材料超过三个共振频率,或可调的光学材料控制多波段法诺共振特征。多波段金属卤化法诺共振perovskite-integrated太赫兹metasurface由激光和一个电场。电导率的钙钛矿的电影metasurface,超灵敏的光电调制。传输振幅增加,展出下降阶段。现象,发现和电容的影响费米能级的提高有重要作用光学和electronic-modulation实验。电子调制有更广泛的频率变化和更高和更广泛的可调调制深度范围内。调制深度高达197%,大幅波动的振幅和更多不稳定的频率传输的变化光谱。

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