Zografopoulos Dimitrios C, Beccherelli Romeo
Consiglio Nazionale delle Ricerche, Istituto per la Microelettronica e Microsistemi (CNR-IMM), Roma 00133, Italy.
Sci Rep. 2015 Aug 14;5:13137. doi: 10.1038/srep13137.
The electrically tunable properties of liquid-crystal fishnet metamaterials are theoretically investigated in the terahertz spectrum. A nematic liquid crystal layer is introduced between two fishnet metallic structures, forming a voltage-controlled metamaterial cavity. Tuning of the nematic molecular orientation is shown to shift the magnetic resonance frequency of the metamaterial and its overall electromagnetic response. A shift higher than 150 GHz is predicted for common dielectric and liquid crystalline materials used in terahertz technology and for low applied voltage values. Owing to the few micron-thick liquid crystal cell, the response speed of the tunable metamaterial is calculated as orders of magnitude faster than in demonstrated liquid-crystal based non-resonant terahertz components. Such tunable metamaterial elements are proposed for the advanced control of electromagnetic wave propagation in terahertz applications.
在太赫兹光谱范围内,从理论上研究了液晶渔网超材料的电可调特性。在两个渔网金属结构之间引入了一个向列型液晶层,形成了一个电压控制的超材料腔。向列型分子取向的调整被证明会改变超材料的磁共振频率及其整体电磁响应。对于太赫兹技术中使用的常见介电和液晶材料以及低施加电压值,预计会有高于150 GHz的频率偏移。由于液晶盒厚度为几微米,因此计算得出可调超材料的响应速度比已展示的基于液晶的非谐振太赫兹组件快几个数量级。提出将这种可调超材料元件用于太赫兹应用中对电磁波传播的高级控制。