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Simulation of tunable metamaterial with nematic liquid crystal layers

机译:向列液晶层可调谐超材料的仿真

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Authors analyze response of tunable liquid crystal metamaterial transducer in microwave frequency range. Tunability of scattering parameters is achieving by reorientation of liquid crystal molecules. Metamaterial (MTM) structure is based on Ω-shape resonators. A full-wave analysis technique based on the finite-difference time-domain method (FDTD) was performed using QuickWave 3D electromagnetic solver. Microwave transmission properties of the metamaterial structure can be controlled by director of liquid crystal layer. Effective refractive index for operation frequency varies from negative to positive values.
机译:作者分析了可调谐液晶超材料换能器在微波频率范围内的响应。散射参数的可调性是通过液晶分子的重新取向来实现的。超材料(MTM)结构基于Ω形谐振器。使用QuickWave 3D电磁求解器进行了基于有限差分时域方法(FDTD)的全波分析技术。超材料结构的微波传输特性可以由液晶层的指向矢来控制。工作频率的有效折射率从负值到正值不等。

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