Terahertz broadband beam-steering Dirac semimetal-coding metasurface based on a genetic algorithm.

Applied optics Pub Date : 2025-09-01 DOI:10.1364/AO.571196
Jiaqi Li, Yu Chen, Yang Cao, Weihua Shi, Dingshan Gao, Ming Zhao, Peili Li
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Abstract

In this paper, a reflective terahertz broadband coding metasurface based on a genetic algorithm using Dirac semimetals as tunable materials is presented, which can realize flexible control of beam steering in the frequency range of 1.49-1.63 THz. First, the three-layer coding metasurface unit with the top layer of the Dirac semimetal pattern is designed using the electrically tunable dielectric constant of Dirac semimetals, which is capable of 2-bit coding in the frequency range of 1.49-1.63 THz. Then, the array arrangements of the coding metasurface are reverse-designed using a genetic algorithm. The results show that not only can both single- and multi-beams be realized at continuous arbitrary angles in the range of an elevation angle of 30° and an azimuth angle of 360°, but also the elevation angle and azimuth angle of each beam in the multi-beam can be controlled independently, which improves the flexibility of terahertz beam steering. Moreover, the steering range of the single-beam elevation angle is further expanded to 39° by employing the Fourier convolution addition rule. Therefore, the proposed terahertz broadband beam-steering Dirac semimetal-coding metasurface has certain application prospects in the fields of terahertz broadband communications and antennas.

基于遗传算法的太赫兹宽带波束导向狄拉克半金属编码超表面。
本文提出了一种基于遗传算法的以Dirac半金属为可调谐材料的反射型太赫兹宽带编码超表面,可在1.49 ~ 1.63太赫兹频率范围内实现波束转向的柔性控制。首先,利用Dirac半金属的电可调谐介电常数,设计了顶层为Dirac半金属图案的三层编码超表面单元,该单元能够在1.49 ~ 1.63 THz频率范围内进行2位编码。然后,利用遗传算法对编码元曲面的排列进行逆向设计。结果表明,该方法不仅可以在仰角30°和方位角360°范围内实现单波束和多波束的连续任意角度,而且可以独立控制多波束中各波束的仰角和方位角,提高了太赫兹波束控制的灵活性。此外,采用傅里叶卷积加法规则将单光束仰角的转向范围进一步扩大到39°。因此,所提出的太赫兹宽带波束导向狄拉克半金属编码超表面在太赫兹宽带通信和天线领域具有一定的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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