[1] Khorasaninejad, M. & Capasso, F. Metalenses: Versatile multifunctional photonic components. Science 358, eaam8100 (2017). doi: 10.1126/science.aam8100
[2] Lin, R. J. et al. Achromatic metalens array for full-colour light-field imaging. Nature Nanotechnology 14, 227-231 (2019). doi: 10.1038/s41565-018-0347-0
[3] Wang, S. et al. A broadband achromatic metalens in the visible. Nature Nanotechnology 13, 227-232 (2018). doi: 10.1038/s41565-017-0052-4
[4] Chen, W. T. et al. A broadband achromatic metalens for focusing and imaging in the visible. Nature Nanotechnology 13, 220-226 (2018). doi: 10.1038/s41565-017-0034-6
[5] Li, F. J. et al. Meta-grating-lens–based monolithic polarization camera. Science Advances 11, eadx9886 (2025).
[6] Yu, Z. et al. Spin‐orbit‐locking vectorial metasurface holography. Advanced Materials 37, 2415142 (2025). doi: 10.1002/adma.202415142
[7] Song, Q. et al. Vectorial metasurface holography. Applied Physics Reviews 9, 011311 (2022). doi: 10.1063/5.0078610
[8] Song, Q. et al. Broadband decoupling of intensity and polarization with vectorial Fourier metasurfaces. Nature Communications 12, 3631 (2021). doi: 10.1038/s41467-021-23908-0
[9] Deng, Z. L. et al. Multi-freedom metasurface empowered vectorial holography. Nanophotonics 11, 1725-1739 (2022).
[10] Deng, Z. L. et al. Vectorial compound metapixels for arbitrary nonorthogonal polarization steganography. Advanced Materials 33, 2103472 (2021). doi: 10.1002/adma.202103472
[11] Yu, Z. et al. A spatial-frequency patching metasurface enabling super-capacity perfect vector vortex beams. eLight 4, 21 (2024). doi: 10.1186/s43593-024-00077-3
[12] Yang, Q. et al. Ultra-secure optical encryption based on tightly focused perfect optical vortex beams. Nanophotonics 11, 1063-1070 (2022). doi: 10.1515/nanoph-2021-0786
[13] Liu, M. et al. Broadband generation of perfect Poincaré beams via dielectric spin-multiplexed metasurface. Nature Communications 12, 2230 (2021). doi: 10.1038/s41467-021-22462-z
[14] Zhang, X. et al. Full-parameter-modulated three-dimensional vectorial generalized vortex array. Light: Science & Applications 15, 7 (2025).
[15] Zhang, X. et al. Multiplexed generation of generalized vortex beams with on‐demand intensity profiles based on metasurfaces. Laser & Photonics Reviews 16, 2100451 (2022).
[16] Zhang, X. et al. Basis function approach for diffractive pattern generation with Dammann vortex metasurfaces. Science Advances 8, eabp8073 (2022). doi: 10.1126/sciadv.abp8073