波前
光学
物理
几何相位
准粒子
极化子
相(物质)
纳米光子学
各向异性
纳米尺度
干涉测量
超材料
光子
镜头(地质)
空间光调制器
近场和远场
相干衍射成像
光电子学
相干控制
等离子体子
偏转(物理)
光学镊子
领域(数学)
相位调制
全息术
散射
作者
Kai Ding,Yue Wang,Yinchang Liao,Hongxin Sun,Yuhua Chen,Zhiwei Yan,Meng Xia,Tao Wang,Xingwang Zhang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-04-22
卷期号:26 (17): 5811-5817
被引量:1
标识
DOI:10.1021/acs.nanolett.6c00552
摘要
Exciton-polaritons (EPs), originating from the coherent hybridization of photons and excitons, are half-light and half-matter quasiparticles possessing nanoscale field confinement. Although EPs can push the spatial resolution of light manipulation to the nanoscale, their pixelated phase control remains a challenge. In this work, we demonstrate EP wavefront shaping by using geometrically tailored tungsten disulfide (WS 2 ) metasurfaces. In these metasurfaces, elliptical WS 2 nanodisks support localized Mie resonances that strongly couple with WS 2 excitons, forming self-hybridized EPs with a Rabi splitting of ∼150 meV. Meanwhile, the anisotropic nanoantenna geometry induces high birefringence, yielding two orthogonally polarized EP resonances for efficient cross-polarization conversion. Leveraging the geometric phase principle, spatially arranged meta-atoms imprint pixelated phase profiles onto the EP output beam. Experimentally, we realize deflection and focusing of the EP beam. This work merges the subwavelength polariton confinement with metasurface wavefront engineering, paving the way toward compact multifunctional polaritonic devices.
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