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首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >Optimization of Terahertz Metamaterials for Near-Field Sensing of Chiral Substances
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Optimization of Terahertz Metamaterials for Near-Field Sensing of Chiral Substances

机译:太赫兹超材料的手性物质近场传感优化

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摘要

We demonstrate metamaterials based on Archimedean spiral arrays that can be used to create elliptically polarized terahertz (THz) waves from a linearly polarized input wave. The operational frequencies of these metamaterials are defined by the geometry of the Archimedean spiral, and the correlation between geometry and operational frequency is studied experimentally as well as numerically. We demonstrate that the operational frequency can be tuned from 0.5 to 1.5 THz. The THz electromagnetic wave is strongly localized near the metamaterial surface. The field enhancement associated with this localization can be used to realize a high-sensitivity chirality sensor, and its potential is studied with full-wave simulations, in which a subwavelength 5-μm-thick layer is detectable. More importantly, it is also possible to distinguish the chiral effect of a single enantiomer in a 50:50 racemic mixture.
机译:我们演示了基于阿基米德螺旋阵列的超材料,可用于根据线性极化输入波创建椭圆极化太赫兹(THz)波。这些超材料的工作频率由阿基米德螺线的几何形状定义,并且通过实验和数值研究了几何形状与工作频率之间的相关性。我们证明了工作频率可以从0.5调整到1.5 THz。太赫兹电磁波强烈地局限在超材料表面附近。与该定位相关的场增强可用于实现高灵敏度手性传感器,并通过全波仿真研究其潜力,其中可检测到亚波长5μm厚的层。更重要的是,还可以区分单一对映体在50:50外消旋混合物中的手性作用。

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