Chinese Journal of Lasers, Volume. 50, Issue 18, 1813013(2023)
Longitudinally Encoding and Decoding Information in Light Field Arrays Based on Metasurface
[1] Wang Y, Wu C C. Current understanding of tropical cyclone structure and intensity changes-a review[J]. Meteorology and Atmospheric Physics, 87, 257-278(2004).
[2] Kim D, Ramanathan V. Solar radiation budget and radiative forcing due to aerosols and clouds[J]. Journal of Geophysical Research, 113, D02203(2008).
[3] Jamet C, Ibrahim A, Ahmad Z et al. Going beyond standard ocean color observations: lidar and polarimetry[J]. Frontiers in Marine Science, 6, 251(2019).
[4] Gong W, Shi S, Chen B W et al. Development and application of airborne hyperspectral LiDAR imaging technology[J]. Acta Optica Sinica, 42, 1200002(2022).
[5] Li R M, Li W Z, Ding M L et al. Demonstration of a microwave photonic synthetic aperture radar based on photonic-assisted signal generation and stretch processing[J]. Optics Express, 25, 14334-14340(2017).
[6] Wang A L, Zheng D K, Du S R et al. Microwave photonic radar system with ultra-flexible frequency-domain tunability[J]. Optics Express, 29, 13887-13898(2021).
[7] Zhang F Z, Guo Q S, Zhang Y et al. Photonics-based real-time and high-resolution ISAR imaging of non-cooperative target[J]. Chinese Optics Letters, 15, 112801(2017).
[8] Zhang F Z, Guo Q S, Wang Z Q et al. Photonics-based broadband radar for high-resolution and real-time inverse synthetic aperture imaging[J]. Optics Express, 25, 16274-16281(2017).
[9] Zhou X, Yu J J. Multi-level, multi-dimensional coding for high-speed and high-spectral-efficiency optical transmission[J]. Journal of Lightwave Technology, 27, 3641-3653(2009).
[10] Winzer P J, Gnauck A H, Doerr C R et al. Spectrally efficient long-haul optical networking using 112-Gb/s polarization-multiplexed 16-QAM[J]. Journal of Lightwave Technology, 28, 547-556(2010).
[11] Gibson G, Courtial J, Padgett M J et al. Free-space information transfer using light beams carrying orbital angular momentum[J]. Optics Express, 12, 5448-5456(2004).
[12] Krenn M, Fickler R, Fink M et al. Communication with spatially modulated light through turbulent air across Vienna[J]. New Journal of Physics, 16, 113028(2014).
[13] Krenn M, Handsteiner J, Fink M et al. Twisted light transmission over 143 km[J]. Proceedings of the National Academy of Sciences of the United States of America, 113, 13648-13653(2016).
[14] Du J, Wang J. High-dimensional structured light coding/decoding for free-space optical communications free of obstructions[J]. Optics Letters, 40, 4827-4830(2015).
[15] Li S H, Wang J. Experimental demonstration of optical interconnects exploiting orbital angular momentum array[J]. Optics Express, 25, 21537-21547(2017).
[16] Fu S Y, Zhai Y W, Zhou H et al. Demonstration of free-space one-to-many multicasting link from orbital angular momentum encoding[J]. Optics Letters, 44, 4753-4756(2019).
[17] Qiao Z, Wan Z Y, Xie G Q et al. Multi-vortex laser enabling spatial and temporal encoding[J]. PhotoniX, 1, 1-14(2020).
[18] Liu M Z, Huo P C, Zhu W Q et al. Broadband generation of perfect Poincaré beams via dielectric spin-multiplexed metasurface[J]. Nature Communications, 12, 2230(2021).
[19] Wan Z S, Shen Y J, Wang Z Y et al. Divergence-degenerate spatial multiplexing towards future ultrahigh capacity, low error-rate optical communications[J]. Light: Science & Applications, 11, 144(2022).
[20] Zhou Y Y, Mirhosseini M, Oliver S et al. Using all transverse degrees of freedom in quantum communications based on a generic mode sorter[J]. Optics Express, 27, 10383-10394(2019).
[21] Zhao Y F, Wang J. High-base vector beam encoding/decoding for visible-light communications[J]. Optics Letters, 40, 4843-4846(2015).
[22] Zhu Z Y, Janasik M, Fyffe A et al. Compensation-free high-dimensional free-space optical communication using turbulence-resilient vector beams[J]. Nature Communications, 12, 1666(2021).
[23] Chen W H, He H X, Lin Q A et al. Meta-learning-based optical vector beam high-fidelity communication under high scattering[J]. Optics Letters, 47, 3131-3134(2022).
[24] Xian M C, Xu Y, Ouyang X et al. Segmented cylindrical vector beams for massively-encoded optical data storage[J]. Science Bulletin, 65, 2072-2079(2020).
[25] Zamboni-Rached M. Stationary optical wave fields with arbitrary longitudinal shape by superposing equal frequency Bessel beams: frozen waves[J]. Optics Express, 12, 4001-4006(2004).
[26] Vieira T A, Gesualdi M R R, Zamboni-Rached M. Frozen waves: experimental generation[J]. Optics Letters, 37, 2034-2036(2012).
[27] Vieira T A, Gesualdi M R R, Zamboni-Rached M et al. Production of dynamic frozen waves: controlling shape, location (and speed) of diffraction-resistant beams[J]. Optics Letters, 40, 5834-5837(2015).
[28] Li P, Wu D J, Zhang Y et al. Polarization oscillating beams constructed by copropagating optical frozen waves[J]. Photonics Research, 6, 756-761(2018).
[29] Guo X Y, Zhong J Z, Li B J et al. Full-color holographic display and encryption with full-polarization degree of freedom[J]. Advanced Materials, 34, 2103192(2022).
[30] Guo X Y, Li P, Zhong J Z et al. Stokes meta-hologram toward optical cryptography[J]. Nature Communications, 13, 6687(2022).
[31] Zhong J Z, Liu S, Guo X Y et al. Reconstructing the topology of optical vortex lines with single-shot measurement[J]. Applied Physics Letters, 119, 161102(2021).
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Xinhao Fan, Xuanguang Wu, Liang Zhou, Sheng Liu, Jianlin Zhao, Peng Li. Longitudinally Encoding and Decoding Information in Light Field Arrays Based on Metasurface[J]. Chinese Journal of Lasers, 2023, 50(18): 1813013
Category: micro and nano optics
Received: Apr. 17, 2023
Accepted: Jun. 13, 2023
Published Online: Aug. 28, 2023
The Author Email: Li Peng (pengli@nwpu.edu.cn)