Polarization variable terahertz metasurface along the propagation path

IF 6.3 3区 综合性期刊 Q1 Multidisciplinary Fundamental Research Pub Date : 2025-01-01 DOI:10.1016/j.fmre.2023.03.017
Jitao Li , Jingyu Liu , Zhen Yue , Jie Li , Chenglong Zheng , Fan Yang , Hui Li , Yating Zhang , Yan Zhang , Jianquan Yao
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Abstract

Conventional metasurfaces for terahertz polarization are limited to performing lateral (in the x-y plane) polarization control of the output wave. In such cases, the polarization state remains unchanged in each output plane along the propagation path. Herein, we propose a terahertz polarization metasurface that operates longitudinally (i.e., along the z-axis direction of propagation), which modifies the polarization state of each output plane throughout the propagation path. Our designed metasurface can control the phase delays of the left-handed and right-handed circularly polarized (LCP and RCP) components of the incident terahertz wave. This enables the LCP beam and RCP beam to converge to the z-axis through distinct paths, creating a Bessel beam. The proposed design achieved a linearly polarized terahertz wave including both LCP and RCP components with a precise phase difference Δφ at each point within a certain range along the z-axis. The Δφ varies as the propagation distance, resulting in a rotated linearly polarized output wave along the propagation path, while the rotation angle ranges from 0 to π. Based on the variable property of longitudinal polarization, we propose an application concept of dielectric refractive index sensing, in which an additional medium is placed in the terahertz propagation path and the unknown refractive index is determined by detecting the rotation angle of the output polarization state. Theoretically, the device might find potential applications in variable media excitation, terahertz communication, and terahertz radar ranging.

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偏振变太赫兹超表面沿传播路径
传统的太赫兹偏振超表面仅限于执行输出波的横向(在x-y平面)偏振控制。在这种情况下,沿传播路径各输出平面的偏振态保持不变。在这里,我们提出了一个纵向(即沿着传播的z轴方向)操作的太赫兹偏振超表面,它在整个传播路径中修改每个输出平面的偏振状态。我们设计的超表面可以控制入射太赫兹波的左手和右手圆偏振(LCP和RCP)分量的相位延迟。这使得LCP光束和RCP光束通过不同的路径汇聚到z轴,形成贝塞尔光束。提出的设计实现了线性极化太赫兹波,包括LCP和RCP分量,沿z轴在一定范围内的每个点具有精确的相位差Δφ。Δφ随传播距离的变化,产生沿传播路径旋转的线极化输出波,旋转角度范围为0 ~ π。基于纵向偏振的可变特性,我们提出了一种介质折射率传感的应用概念,即在太赫兹传播路径中放置额外的介质,通过检测输出偏振态的旋转角度来确定未知的折射率。理论上,该装置可能会在可变介质激励、太赫兹通信和太赫兹雷达测距中找到潜在的应用。
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来源期刊
Fundamental Research
Fundamental Research Multidisciplinary-Multidisciplinary
CiteScore
4.00
自引率
1.60%
发文量
294
审稿时长
79 days
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