Xu Yuehong, Takida Yuma, Suzuki Tetsu, Minamide Hiroaki
RIKEN Center for Advanced Photonics, RIKEN, 519-1399 Aramaki-Aoba, Sendai, Miyagi, 980-0845, Japan.
Adv Sci (Weinh). 2025 Feb;12(8):e2412688. doi: 10.1002/advs.202412688. Epub 2024 Dec 30.
This study presents a generalized design strategy for novel terahertz-wave polarization space-division multiplexing meta-devices, functioning as multi-polarization generators, modulators, and analyzers. It introduces the spin-decoupled phase control method by combining gradient phase design with circular polarization multiplexing techniques, enabling exceptional flexibility in controlling the polarization directions and spatial distributions of multiple output beams. The meta-device M-4D is significantly demonstrated as proof of concept, which converts an incident linearly polarized wave into four beams with distinct polarization angles. Additionally, the advanced meta-devices M-2B and M-4B are designed to generate two-vector and four-vector Bessel beams with tunable spatial polarization distributions. These meta-devices demonstrate dynamic multi-polarization beam modulation, validated through simulations and experiments. The proposed method significantly expands the design methodology for multi-beam polarization control using all-dielectric metasurfaces and holds promising potential for applications in imaging, sensing, particle manipulation, communication, and information processing. Moreover, it holds potential for adaptation to other spectral ranges.
本研究提出了一种用于新型太赫兹波偏振空分复用超材料器件的通用设计策略,这些器件可作为多偏振发生器、调制器和分析仪。它通过将梯度相位设计与圆偏振复用技术相结合,引入了自旋解耦相位控制方法,在控制多个输出光束的偏振方向和空间分布方面具有卓越的灵活性。超材料器件M - 4D作为概念验证得到了显著展示,它能将入射的线偏振波转换为具有不同偏振角度的四束光。此外,先进的超材料器件M - 2B和M - 4B被设计用于生成具有可调空间偏振分布的双矢量和四矢量贝塞尔光束。这些超材料器件展示了动态多偏振光束调制,通过模拟和实验得到了验证。所提出的方法显著扩展了使用全介质超表面进行多光束偏振控制的设计方法,在成像、传感、粒子操纵、通信和信息处理等应用中具有广阔的潜在应用前景。此外,它还有适应其他光谱范围的潜力。