多维超材料流体传感器

R. Lucklum, M. Zubtsov, A. Oseev, A. Omar, A. Martínez
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引用次数: 0

摘要

我们首次报道了同时应用受限电磁波和声波的流体传感器平台。限制是在所谓的光子晶体中实现的,光子晶体是一种特殊的超材料。超材料是通过结合(亚)波长大小的结构元素来达到预期效果的。传感器平台是一个实心板,其特征是排列在方形晶格中的孔阵列。缺陷引入局部共振,并且发现共振频率依赖于附在缺陷上的折射率或介电常数和质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multidimensional metamaterial fluid sensor
We report for the first time on a fluid sensor platform applying simultaneously confined electromagnetic and acoustic waves. Confinement is realized in a so-called phoxonic crystal, a specific version of a metamaterial. Metamaterials are engineered to achieve desired effects by incorporating structural elements of (sub-)wavelength sizes. The sensor platform is a solid plate featuring an array of holes arranged in a square lattice. A defect introduces local resonances and the resonance frequency has been found to depend on refractive index or permittivity and mass attached to the defect.
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