太赫兹辐射
超材料
不透明度
材料科学
分裂环谐振器
光电子学
平面的
折射率
谐振器
光学
电场
基质(水族馆)
电介质
物理
计算机科学
量子力学
海洋学
计算机图形学(图像)
地质学
作者
Yogesh Kumar Srivastava,Longqing Cong,Ranjan Singh
摘要
Sensing technologies based on terahertz waves have immense potential due to their non-destructive, transparent, and fingerprint spectral response of several materials that are opaque to other parts of the electromagnetic spectrum. Terahertz metasensors reported so far merely exploit the fringing electric field on the top of the subwavelength resonators. Here, we experimentally demonstrate an ultrathin flexible terahertz metamaterial sensor on a low refractive index substrate which enables sensing of analytes from the top and bottom surfaces of the metamaterial, opening up avenues for dual-surface sensing of analytes with fringing resonant fields on both front and rear sides of a metasurface. Since most of the real-world objects have 3D curvatures, the reported flexible metasensor with large mechanical strength and stability in free space would be an ideal platform for ultrasensitive sensing of dielectrics, chemicals, and biomolecules of extremely low concentrations with dual non-planar surfaces.
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