Harumi Asada, Endo Kota, Suzuki Takehito
Opt Express. 2021 May 10;29(10):14513-14524. doi: 10.1364/OE.420827.
Terahertz flat optics is a design concept for replacing conventional three-dimensional bulky optical components with two-dimensional ultra-thin optical components. However, high refractive index materials suitable for flat optics are frequently subject to high Fresnel reflections due to the cumbersome control of the relative permeability it requires. Here we experimentally demonstrate a reflectionless metasurface with a high refractive index of 5.88 + j1.57, extremely low reflectance of 1.3%, high relative permittivity of 6.73 + j0.85, and the high relative permeability of 5.03 + j2.11 at 2.97 THz. The super-fine ink-jet printer using silver paste ink fabricates the metasurface consisting of 80,036 pairs of cut metal wires on both the front and back of a 5 μm-thick polyimide film. The findings also demonstrate that weak conductors as well as good conductors can be used in the design of reflectionless metasurfaces with a high refractive index in the terahertz waveband. The presented metasurface can offer an accessible platform for terahertz flat optics in 6G (beyond 5G) wireless communications and imaging.
太赫兹平面光学是一种设计理念,旨在用二维超薄光学元件取代传统的三维笨重光学元件。然而,适用于平面光学的高折射率材料由于需要繁琐地控制其相对磁导率,经常会产生高菲涅尔反射。在此,我们通过实验展示了一种无反射超表面,在2.97太赫兹时,其具有5.88 + j1.57的高折射率、1.3%的极低反射率、6.73 + j0.85的高相对介电常数以及5.03 + j2.11的高相对磁导率。使用银浆墨水的超精细喷墨打印机在5微米厚的聚酰亚胺薄膜的正面和背面制作了由80,036对切割金属线组成的超表面。研究结果还表明,在太赫兹波段,弱导体以及良导体均可用于设计具有高折射率的无反射超表面。所展示的超表面可为6G(超越5G)无线通信和成像中的太赫兹平面光学提供一个可及的平台。