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具有太赫兹全斯托克斯偏振探测行为的宽带全介质超透镜

Broadband all-dielectric meta-lenses with terahertz full-Stokes polarization detection behavior.

作者信息

Li Hui, Zhao Chenhui, Li Jie, Zheng Chenglong, Xu Hang, Xu Wenhui, Tan Qi, Song Chunyu, Shen Yun, Yao Jianquan

出版信息

Opt Express. 2024 Oct 7;32(21):37916-37927. doi: 10.1364/OE.539805.

Abstract

Polarization is a fundamental characteristic of electromagnetic (EM) waves, and accurately determining the polarization state is crucial for spectral imaging and information processing. However, implementing broadband polarization detection in the terahertz (THz) range poses significant challenges when employing conventional optics. This paper proposes and experimentally evaluates a broadband polarization detection strategy using all-dielectric metasurfaces. By employing the technique of circular polarization multiplexing, the proposed approach allows for the generation of a focus that contains the incident polarization information at a predetermined plane. When a fully polarized THz beam interacts with the proposed design, its two orthogonal circularly polarized components weighted equally and simultaneously converge at designed spatial coordinates. Subsequently, by capturing the complex amplitude at the target pixel, the full-Stokes parameters and equations of the polarization ellipse corresponding to the incident polarization state can be extracted in real time. Further optimization of the phase encoding profile embedded within the orthogonal circular polarization channel can eliminate the chromatic aberrations within the target bandwidth, thereby achieving broadband THz polarization detection. This method facilitates the determination of polarization states across the broadband THz spectrum and holds significant promise for advancing polarization-related research in areas such as detection, communication, and sensing.

摘要

偏振是电磁波(EM)的一个基本特性,准确确定偏振态对于光谱成像和信息处理至关重要。然而,在太赫兹(THz)波段采用传统光学器件实现宽带偏振检测面临重大挑战。本文提出并通过实验评估了一种使用全介质超表面的宽带偏振检测策略。通过采用圆偏振复用技术,该方法能够在预定平面上生成一个包含入射偏振信息的焦点。当一个全偏振太赫兹光束与所提出的设计相互作用时,其两个正交圆偏振分量等权重且同时在设计的空间坐标处汇聚。随后,通过捕获目标像素处的复振幅,可以实时提取与入射偏振态对应的全斯托克斯参数和偏振椭圆方程。对嵌入正交圆偏振通道内的相位编码轮廓进行进一步优化,可以消除目标带宽内的色差,从而实现宽带太赫兹偏振检测。该方法有助于确定整个宽带太赫兹光谱的偏振态,并在检测、通信和传感等领域推进与偏振相关的研究方面具有重大前景。

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