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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Tunable and switchable resonance in optically-controlled nested metamaterials at terahertz frequencies
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Tunable and switchable resonance in optically-controlled nested metamaterials at terahertz frequencies

机译:光控嵌套超材料在太赫兹频率下的可调和可切换共振

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摘要

The asymmetrical nested metamaterial, composed of two split-ring resonators (SRRs) and two embedded gallium arsenide (GaAs) islands placed in the two SRRs, has been elaborately designed on quartz substrate. Its tunable and switchable resonances at terahertz (THz) frequencies are numerically demonstrated here based on different conductivities of GaAs, which can be transformed from semiconductor to metallic state through appropriate optical excitation. Without photoexcitation, our designed metamaterial has three resonance peaks in the range of monitored frequency range, and they are located at 0.813, 1.269 and 1.722 THz, respectively. As the conductivity of the two GaAs islands increases, different new resonances appear and constantly strengthen. Finally, four new resonant points are generated, at 0.432, 0.948, 1.578 and 1.875 THz, respectively. At the same time, the metamaterial structure is changed from the original nested mode to a new integral mode. Applying reversible changing conductivity of semiconductor to push the conversion of resonance, this asymmetrical nested design provides a new instance in application and development of additional THz devices.
机译:由两个开口环谐振器(SRR)和放置在两个SRR中的两个嵌入式砷化镓(GaAs)岛组成的非对称嵌套超材料已经在石英基板上进行了精心设计。在此,基于GaAs的不同电导率,在数值上证明了其在太赫兹(THz)频率下的可调谐和可切换谐振,可以通过适当的光激发将其从半导体转变为金属态。在没有光激发的情况下,我们设计的超材料在监视的频率范围内具有三个共振峰,分别位于0.813、1.269和1.722 THz。随着两个GaAs岛电导率的增加,出现了不同的新共振并不断增强。最后,分别在0.432、0.948、1.578和1.875 THz处产生了四个新的谐振点。同时,超材料结构从原始的嵌套模式更改为新的整体模式。通过应用半导体的可逆变化的电导率来推动谐振的转换,这种不对称的嵌套设计为其他THz器件的应用和开发提供了新的实例。

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