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Encoded-Enhancement of THz Metasurface Figure of Merit for Label-Free Sensing

机译:编码 - 增强THz METASURFACE标签的无标签感应图

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摘要

We describe an experimental strategy for the use of Terahertz (THz) metasurfaces as a platform for label-free wide range detection of the dielectric function in biological fluids. Specifically, we propose a metagrid (MG), opportunely infiltrated with a fluid and then capped, as the reference structure for sensing experiments with a high reproducibility character. By combining experiments and full-wave simulations of the transmission T of such a structure, we introduce a reliable set up where the volume of the involved analyte in each unit cell is precisely determined. The unavoidable decrease in the quality factor of the intrinsic resonances due to the lossy fluid and cap layer is circumvented using an appropriate transformation of T that amplifies the change in the MG intrinsic resonances, improving in such a way the sensor sensitivity to values close to the experimental limits. The transformed signal features delta-like peaks enabling an easy readout of frequency positions at resonances.
机译:我们描述了利用太赫兹metasurfaces的为无标记探测范围广的生物液体介质功能的平台的实验策略。具体地,我们提出了一个metagrid(MG),与流体,然后盖上盖巧渗透,如用于感测实验中以高再现字符的参考结构。通过结合实验和这样的结构的变速器T的全波模拟,我们引入一个可靠的设立,其中在每个单元电池所涉及的分析物的量精确地确定。在本征谐振的品质因数由于有损流体和帽层不可避免的降低是使用T的适当的变换规避放大在MG固有共振的变化,以这样的方式提高传感器灵敏度的值接近实验的限制。变换的信号提供Delta样峰启用频率位置中的谐振容易读出。

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