强度(物理)
光学
材料科学
相(物质)
几何相位
物理
光电子学
光强度
激光器
几何光学
相位调制
作者
Tianchen Tang,Yongzheng Lu,Zhouyu Xie,Susu Hu,Ziheng Qian,Li Wei,Bo Dai,Songlin Zhuang,D Zhang
出处
期刊:ACS Photonics
[American Chemical Society]
日期:2026-04-15
卷期号:13 (9): 2738-2749
标识
DOI:10.1021/acsphotonics.6c00399
摘要
Longitudinal multifocal metalenses are pivotal for miniaturized multimagnification and 3D imaging, yet integrating tailored multifocal distributions, achromaticity, and polarization multiplexing in a single-layer design remains challenging. Here, we report a nanoprinted geometric-phase metalens that generates a longitudinally separated triple-wavelength multifoci, each wavelength producing three independent foci. The spatial overlap creates hybrid foci featuring a discrete-wavelength achromatic primary focus alongside companion foci, with fully tailorable polarization and intensity. Utilizing the optimized two-photon polymerization lithography, we achieve a 650 nm lattice period and an aspect ratio of ∼16, overcoming prior limits in phase sampling and diffraction loss. The fabricated metalens exhibits axial chromatic aberration below 1 μm and near-diffraction-limited focusing. Two prototypes are demonstrated for coherent red-yellow-green characterization and incoherent red-green-blue imaging, both enabling high-quality achromatic multimagnification. This strategy provides a compact, low-cost route toward integrated metalens optical systems.
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