Opt Express. 2023 Jun 5;31(12):19076-19088. doi: 10.1364/OE.490078.
Many components for terahertz (THz) optical filtering are mechanically fragile and are hard to produce with large aperture, making them unsuitable for applications where larger THz beam diameter is required. In this work, the THz optical properties of industrial-grade, readily available and inexpensive woven wire meshes are studied using THz time-domain spectroscopy and numerical simulations. These meshes are meter-sized, free-standing sheet materials that are principally attractive for the use as robust, large-area THz components. Our results show that such meshes can act as efficient, tunable THz bandpass filters due to sharp plasmonic resonance supported by the interwoven metallic wires. Further, the meshes that combine metallic and polymer wires act as efficient THz linear polarizers with a polarization extinction ratio (field) above 60:1 for frequencies below 3 THz.
许多太赫兹(THz)光学滤波器的组件机械脆弱,难以制造大孔径,因此不适合需要更大 THz 光束直径的应用。在这项工作中,使用太赫兹时域光谱和数值模拟研究了工业级、现成且廉价的编织线网的太赫兹光学性质。这些网是米级的、独立的片状材料,主要吸引人之处在于它们可以作为坚固、大面积的太赫兹组件使用。我们的结果表明,由于相互交织的金属线支持的尖锐等离子体共振,这种网可以作为高效、可调谐的太赫兹带通滤波器。此外,结合金属和聚合物线的网可以作为高效的太赫兹线性偏振器,在低于 3 THz 的频率下,偏振消光比(场)超过 60:1。