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Design and modulation of the plasmon-induced transparency based on terahertz metamaterials

机译:基于太赫兹超材料的等离子体诱导透明度的设计与调制

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In this paper, an electromagnetic metamaterial with single metal layer is proposed and measured based on plasmon-induced transparency effect (PIT). A transmission window with a full width at half maximum (FWHM) 0.17 THz is achieved in 5-8 THz due to the hybridization between bright-bright modes. In this transmission window, the slow-light effect can be found at resonance frequency 6.36THz. Positive group delay and phase delay are obtained by the metamaterial structure. In experiments, this transmission peak is shifted to higher frequency with the radius R increasing, and moved to lower frequency with the lattice period P increasing. Moreover, the transmission peak can be controlled by changing temperature in experiments. This proposed metamaterial shows the the potential for temperature sensing.
机译:本文提出了一种基于等金属层的电磁超材料,并基于等离子体诱导的透明度效应(坑)测量。 由于亮光模式之间的杂交,在5-8 ZHz中实现了一个半最大(FWHM)0.17星形的透射窗口。 在该传输窗口中,可以在谐振频率6.36thz处找到慢光效果。 通过超材料结构获得正组延迟和相位延迟。 在实验中,该传输峰值随半径R增加而移动到较高频率,并且通过晶格周期P增加移动到较低的频率。 此外,可以通过在实验中改变温度来控制传输峰值。 这一提出的超材料显示了温度感测的可能性。

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