| [1] | Jang J, Badloe T, Rho J. Unlocking the future of optical security with metasurfaces. Light Sci Appl. 2021;10:144. | 
		
				| [2] | Kim I, et al. Pixelated bifunctional metasurface-driven dynamic vectorial holographic color prints for photonic security platform. Nat Commun. 2021;12:3614. | 
		
				| [3] | Kim J, et al. Photonic encryption platform via Dual-Band Vectorial metaholograms in the Ultraviolet and visible. ACS Nano. 2022;16:3546–53. | 
		
				| [4] | Kang H, et al. Tailoring high-refractive-index nanocomposites for manufacturing of ultraviolet metasurfaces. Microsyst Nanoeng. 2024;10:53. | 
		
				| [5] | Bao Y, Wen L, Chen Q, Qiu C-W, Li B. Toward the capacity Limit of 2D Planar Jones matrix with a single-layer metasurface. Sci Adv. 2021;7: eabh0365. | 
		
				| [6] | Liu S, Liu X, Yuan J, Bao J. Multidimensional information encryption and storage: when the input is light. Research. 2021;2021:7897849. | 
		
				| [7] | Kim J, et al. Dynamic hyperspectral holography enabled by inverse-designed metasurfaces with Oblique Helicoidal Cholesterics. Adv Mater. 2024;36:2311785. | 
		
				| [8] | Gopakumar M, et al. Full-colour 3D holographic augmented-reality displays with metasurface waveguides. Nature. 2024;629:791–7. | 
		
				| [9] | An J, et al. Slim-panel holographic video display. Nat Commun. 2020;11:5568. | 
		
				| [10] | Kim J, et al. Scalable Manufacturing of High-Index Atomic layer–polymer hybrid metasurfaces for Metaphotonics in the visible. Nat Mater. 2023;22:474–81. | 
		
				| [11] | Ko J, et al. Metasurface-embedded contact lenses for Holographic Light Projection. Adv Sci. 2024;11:2407045. | 
		
				| [12] | Yu P, et al. Generation of switchable singular beams with dynamic metasurfaces. ACS Nano. 2019;13:7100–6. | 
		
				| [13] | Jin L, et al. Dielectric multi-momentum meta-transformer in the visible. Nat Commun. 2019;10:4789. | 
		
				| [14] | Zhou H, et al. Polarization-encrypted orbital angular momentum multiplexed metasurface holography. ACS Nano. 2020;14:5553–9. | 
		
				| [15] | Fang X, Ren H, Gu M. Orbital angular momentum holography for high-security encryption. Nat Photon. 2020;14:102–8. | 
		
				| [16] | Shi Z, Wan Z, Zhan Z, Liu K, Liu Q, Fu X. Super-resolution orbital angular momentum holography. Nat Commun. 2023;14:1869. | 
		
				| [17] | Fang X, et al. High-dimensional orbital angular momentum multiplexing nonlinear holography. Adv Photonics. 2021;3:015001. | 
		
				| [18] | Yang H, et al. Angular Momentum Holography via a minimalist metasurface for optical nested encryption. Light Sci Appl. 2023;12:79. | 
		
				| [19] | Zhang F, Kong L-J, Zhang Z, Zhang J, Zhang X. Laguerre Gaussian Mode Holography and its application in optical encryption. Opt Express. 2023;31:12922. | 
		
				| [20] | Guo J, et al. Spatially structured-mode multiplexing holography for high-capacity security encryption. ACS Photonics. 2023;10:757–63. | 
		
				| [21] | Zhang N, Xiong B, Zhang X, Yuan X. Multiparameter encrypted orbital angular momentum multiplexed holography based on multiramp helicoconical beams. Adv Photonics Nexus. 2023;2:036013. | 
		
				| [22] | He G, et al. Multiplexed manipulation of orbital angular momentum and wavelength in metasurfaces based on arbitrary complex-amplitude control. Light Sci Appl. 2024;13:98. | 
		
				| [23] | So S, Mun J, Park J, Rho J. Revisiting the design strategies for Metasurfaces: fundamental physics, optimization, and Beyond. Adv Mater. 2023;35: 2206399. | 
		
				| [24] | Choi E, Kim G, Yun J, Jeon Y, Rho J, Baek S-H. 360° structured light with learned metasurfaces. Nat Photon. 2024;18:848–55. | 
		
				| [25] | Yoon J, Jung C, Kim J, Rho J, Lee H. Chemically and geometrically programmable photoreactive polymers for transformational humidity-sensitive full-color devices. Nat Commun. 2024;15:6470. | 
		
				| [26] | Jung C, et al. Metasurface-driven optically variable devices. Chem Rev. 2021;121:13013–50. | 
		
				| [27] | Jung C, Lee E, Rho J. The rise of electrically tunable metasurfaces. Sci Adv. 2024;10:eado8964. | 
		
				| [28] | Kang H, Kim H, Kim K, Rho J. Printable spin-multiplexed metasurfaces for Ultraviolet Holographic displays. ACS Nano. 2024;18:21504–11. | 
		
				| [29] | Ren H, et al. Publisher correction: an achromatic metafiber for focusing and imaging across the entire telecommunication range. Nat Commun. 2022;13:4321. | 
		
				| [30] | Chen WT, Park J-S, Marchioni J, Millay S, Yousef KMA, Capasso F. Dispersion-Engineered metasurfaces reaching Broadband 90% relative diffraction efficiency. Nat Commun. 2023;14:2544. | 
		
				| [31] | Yang Y, et al. Revealing Structural disorder in hydrogenated amorphous silicon for a low-loss photonic platform at visible frequencies. Adv Mater. 2021;33:2005893. | 
		
				| [32] | Ren H, Fang X, Jang J, Bürger J, Rho J, Maier SA. Complex-amplitude metasurface-based orbital angular momentum holography in momentum space. Nat Nanotechnol. 2020;15:948–55. | 
		
				| [33] | Ren H, et al. Metasurface orbital angular momentum holography. Nat Commun. 2019;10:2986. | 
		
				| [34] | So S, et al. Multicolor and 3D Holography generated by inverse-designed single‐cell metasurfaces. Adv Mater. 2023;35:2208520. | 
		
				| [35] | Overvig AC, Malek SC, Yu N. Multifunctional nonlocal metasurfaces. Phys Rev Lett. 2020;125: 17402. | 
		
				| [36] | Kim M, Lee D, Kim J, Rho J. Nonlocal metasurfaces-enabled Analog Light localization for imaging and lithography. Laser Photonics Rev. 2024;18:2300718. | 
		
				| [37] | Malek SC, Overvig AC, Alù A, Yu N. Multifunctional resonant wavefront-shaping meta-optics based on multilayer and multi-perturbation nonlocal metasurfaces. Light Sci Appl. 2022;11:246. | 
		
				| [38] | Kim J, et al. A water-soluble label for food products prevents packaging waste and counterfeiting. Nat Food. 2024;5:293–300. | 
		
				| [39] | Kim J, et al. Metasurface Holography reaching the highest efficiency limit in the visible via one-step nanoparticle-embedded-Resin Printing. Laser Photonics Rev. 2022;16:2200098. | 
		
				| [40] | Zhang C, et al. Low-loss metasurface optics down to the deep ultraviolet region. Light Sci Appl. 2020;9:55. | 
		
				| [41] | Kim J, et al. One-step printable platform for high-efficiency metasurfaces down to the Deep-Ultraviolet Region. Light Sci Appl. 2023;12:68. | 
		
				| [42] | Kim J, et al. 8″ Wafer-Scale, Centimeter-Sized, high-efficiency metalenses in the Ultraviolet. Mater Today. 2024;73:9–15. |