THz characterization of a metamaterial-based spatial light modulator

N. Chikhi, M. Lisitskiy, R. Casini, G. Papari, V. Tkachenko, H. Altan, A. Andreone
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Abstract

The aim of this work is to investigate new classes of artificial materials exhibiting unconventional properties in order to build novel devices operating in the Terahertz regime. We focus on the design, fabrication and characterization of tunable metamaterials with unit cells based on Split Ring Resonators. By incorporation of a nematic liquid crystal in the structure, we observe a frequency shift in the resonant response over 10% in bandwidth and more than 10 dB change in the signal absorption. We discuss how such a hybrid structure can be exploited for the development of a THz spatial light modulator.
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基于超材料的空间光调制器的太赫兹特性
这项工作的目的是研究具有非常规特性的新型人工材料,以构建在太赫兹范围内工作的新型设备。我们专注于基于分裂环谐振器的可调谐超材料的设计、制造和表征。通过在结构中加入向列液晶,我们观察到谐振响应的频移超过10%的带宽,信号吸收的变化超过10db。我们讨论了如何利用这种混合结构来开发太赫兹空间光调制器。
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