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Optically and thermally controlled terahertz metamaterial via transition between direct and indirect electromagnetically induced transparency

机译:通过直接和间接电磁感应的透明性之间的过渡进行光和热控制的太赫兹超材料

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This passage presents a design of tunable terahertz metamaterials via transition between indirect and direct electromagnetically induced transparency (EIT) effects by changing semiconductor InSb’s properties to terahertz wave under optical and thermal stimuli. Mechanical model and its electrical circuit model are utilized in analytically calculating maximum transmission of transparency window. Simulated results show consistency with the analytical expressions. The results show that the metamaterials hold 98.4% modulation depth at 189 GHz between 300 K, σ InSb =256000 S/m, and 80 K, σ InSb =0.0162 S/m conditions , 1360 ps recovery time of the excited electrons in InSb under optical stimulus at 300 K mainly considering the direct EIT effect, and minimum bandwidth 1 GHz.
机译:此段落通过在光和热刺激下将半导体InSb的特性更改为太赫兹波,通过间接和直接电磁感应透明(EIT)效应之间的过渡,提出了可调谐太赫兹超材料的设计。利用机械模型及其电路模型来分析计算透明窗的最大透射率。仿真结果表明与解析表达式一致。结果表明,超材料在189 GHz下在300 K,σInSb = 256000 S / m和80 K,σInSb = 0.0162 S / m的条件下,在InSb中激发电子的恢复时间为1360 ps时,具有98.4%的调制深度。主要考虑直接EIT效应和最小带宽1 GHz的300 K光刺激。

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