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Mechanisms and applications of terahertz metamaterial sensing: a review

机译:太赫兹的机制和应用超材料传感:审查

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摘要

Terahertz (THz) technology has attracted great worldwide interest and novel high-intensity THz sources and plasmonics are two of the most active fields of recent research. Being situated between infrared light and microwave radiation, the absorption of THz rays in molecular and biomolecular systems is dominated by the excitation of intramolecular and intermolecular vibrations. This indicates that THz technology is an effective tool for sensing applications. However, the low sensitivity of free-space THz detection limits the sensing applications, which gives a great opportunity to metamaterials. Metamaterials are periodic artificial electromagnetic media structured with a size scale smaller than the wavelength of external stimuli. They present localized electric field enhancement and large values of quality factor (Q factor) and show high sensitivity to minor environment changes. In the present work, the mechanism of THz metamaterial sensing and dry sample and microfluidic sensing applications based on metamaterials are introduced. Moreover, new directions of THz metamaterial sensing advancement and introduction of two-dimensional materials and nanoparticles for future THz applications are summarized and discussed.
机译:太赫兹(太赫兹)技术吸引了伟大高强度太赫兹全球利益和小说源和等离子是两个最活跃的最近的研究领域。红外线和微波辐射吸收的分子和太赫兹射线由生物分子系统分子内和分子间的激励振动。遥感应用程序的一个有效的工具。然而,空间太赫兹的低灵敏度检测限制了遥感应用程序超材料提供了一个很好的机会。超材料是周期性人工电磁媒体结构的大小规模小于外部的波长刺激。增强和大的品质因数(Q值因素)和显示高灵敏度小环境的变化。机制太赫兹超材料的传感和干燥样品和微流控传感应用介绍了基于超材料。新方向的太赫兹超材料传感发展和引入二维为未来的太赫兹材料和纳米颗粒应用进行了总结和讨论。

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