Dispersion study of a broadband terahertz focusing reflecting metasurface for 6G wireless communication

IF 1.1 Q4 OPTICS Optics continuum Pub Date : 2023-06-02 DOI:10.1364/optcon.493627
Fahim Ferdous Hossain, John F. OHara
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Abstract

In 6G wireless communications, functional terahertz reflecting metasurfaces are expected to play increasingly important roles such as beamforming and beamsteering. However, their performance optimization as a function of multiple competing design parameters remains a significant challenge. This paper demonstrates a multi-dimensionally optimized design of a functional and efficient focusing metasurface reflector in the burgeoning D-band (0.11-0.17 THz). In addition to achieving 20% fractional bandwidth (0.135-0.165 THz), this design is polarization-maintaining, diffraction limited, simple in design, and exhibits 64.1% broadband power efficiency (1.9 dB insertion loss). We perform a unique study of the magnitude of temporal (group-delay) dispersion introduced by this design to the broadband signal at the focus. Despite being formed by an array of highly dispersive resonators, the metasurface exhibits very low dispersion, which avoids pulse reshaping and its consequent limitations on achievable data rate. The low dispersion characteristic of the metasurface is a consequence of its optimized design. The design and performance of the focusing reflector are presented followed by a dispersion analysis revealing that only 2.83% temporal broadening of the pulse is observed at the focus.
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6G无线通信宽带太赫兹聚焦反射超表面色散研究
在6G无线通信中,功能太赫兹反射超表面有望发挥越来越重要的作用,如波束形成和波束控制。然而,作为多个竞争设计参数的函数,它们的性能优化仍然是一个重大挑战。本文演示了在新兴的D波段(0.11-0.17THz)中功能性和高效聚焦超表面反射器的多维优化设计。除了实现20%的分数带宽(0.135-0.165 THz)外,该设计具有偏振保持、衍射受限、设计简单的特点,并表现出64.1%的宽带功率效率(1.9 dB插入损耗)。我们对这种设计引入焦点处宽带信号的时间(群延迟)色散的幅度进行了独特的研究。尽管由高度色散的谐振器阵列形成,但元表面表现出非常低的色散,这避免了脉冲整形及其对可实现数据速率的限制。超表面的低色散特性是其优化设计的结果。介绍了聚焦反射器的设计和性能,随后进行了色散分析,结果表明在焦点处仅观察到2.83%的脉冲时间加宽。
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