Terahertz Circular Dichroism Spectroscopy of 3D Chiral Metallic Microstructures Fabricated Using High Precision CNC Machining

IF 4.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE journal of microwaves Pub Date : 2024-12-25 DOI:10.1109/JMW.2024.3507188
Atsushi Ouchi;Saroj R. Tripathi
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Abstract

Recent advancements in terahertz wave applications for sensing, imaging, and high-speed communication have spurred a substantial demand for low-cost, easily accessible optical components capable of manipulating terahertz wave polarization. In this study, terahertz circular dichroism spectroscopic measurements of micrometer-sized metallic chiral helix arrays, fabricated using computer numerical control (CNC) machining, are presented. Experimental results demonstrate a giant circular dichroism of ±0.6 in an axial mode of operation for left- and right-handed arrays within a sub-terahertz frequency range. The helix array converts linearly polarized light into circularly polarized light from 120 GHz to 200 GHz, with a 3 dB axial ratio relative bandwidth approaching 50%. The polarization extinction ratio is in excess of 20 dB. These outstanding features, combined with their low cost, high accessibility, as well as their potential for mass production, pave the way for development of diverse range of optical components such as polarizers, filters, absorbers, and isolators operating in the terahertz frequency region.
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高精度数控加工制备三维手性金属微结构的太赫兹圆二色光谱
最近太赫兹波在传感、成像和高速通信方面的应用取得了进展,这刺激了对能够操纵太赫兹波偏振的低成本、易于获取的光学元件的大量需求。在这项研究中,太赫兹圆二色光谱测量微米尺寸的金属手性螺旋阵列,利用计算机数控(CNC)加工,提出。实验结果表明,在亚太赫兹频率范围内,左手和右手阵列在轴向工作模式下具有±0.6的巨大圆二色性。螺旋阵列将线偏振光转换成圆偏振光,频率从120 GHz到200 GHz, 3 dB轴向比相对带宽接近50%。偏振消光比大于20 dB。这些突出的特点,加上它们的低成本,高可及性,以及它们的大规模生产潜力,为开发各种光学元件铺平了道路,如在太赫兹频率区域工作的偏振器,滤波器,吸收器和隔离器。
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10.70
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审稿时长
8 weeks
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