• Chinese Optics Letters
  • Vol. 21, Issue 10, 101602 (2023)
Jing Wang1, Wenli Wang2, Yang Lu1, Qun Hao2, and Liandong Yu1、*
Author Affiliations
  • 1China University of Petroleum, Qingdao 266580, China
  • 2Beijing Institute of Technology, Beijing 100081, China
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    DOI: 10.3788/COL202321.101602 Cite this Article Set citation alerts
    Jing Wang, Wenli Wang, Yang Lu, Qun Hao, Liandong Yu. Parallel all-optical logic operations based on metasurface polarization optics[J]. Chinese Optics Letters, 2023, 21(10): 101602 Copy Citation Text show less
    References

    [1] D. R. Solli, B. Jalali. Analog optical computing. Nat. Photonics, 9, 704(2015).

    [2] R. Athale, D. Psaltis. Optical computing: past and future. Opt. Photonics News, 27, 32(2016).

    [3] C. Wu, H. Yu, S. Lee, R. Peng, I. Takeuchi, M. Li. Programmable phase-change metasurfaces on waveguides for multimode photonic convolutional neural network. Nat. Commun., 12, 96(2021).

    [4] H. J. Caulfield, S. Dolev. Why future supercomputing requires optics. Nat. Photonics, 4, 261(2010).

    [5] W. Ying, X. Fan, J. Gu, S. Xu, S. Liu. Oxyfluoride glass-ceramics for upconversion all-optical combinational logic gate operations. Cell Rep. Phys. Sci., 3, 100871(2022).

    [6] H. Wei, Z. Wang, X. Tian, M. Käll, H. Xu. Cascaded logic gates in nanophotonic plasmon networks. Nat. Commun., 2, 387(2011).

    [7] Y. Sang, X. Wu, S. S. Raja, C.-Y. Wang, H. Li, Y. Ding, D. Liu, J. Zhou, H. Ahn, S. Gwo, J. Shi. Broadband multifunctional plasmonic logic gates. Adv. Opt. Mater., 6, 1701368(2018).

    [8] M. W. McCutcheon, G. W. Rieger, J. F. Young, D. Dalacu, P. J. Poole, R. L. Williams. All-optical conditional logic with a nonlinear photonic crystal nanocavity. Appl. Phys. Lett., 95, 221102(2009).

    [9] K. Li, H.-F. Ting, M. A. Foster, A. C. Foster. High-speed all-optical NAND/AND logic gates using four-wave mixing Bragg scattering. Opt. Lett., 41, 3320(2016).

    [10] N. Yu, P. Genevet, M. A. Kats, F. Aieta, J.-P. Tetienne, F. Capasso, Z. Gaburro. Light propagation with phase discontinuities: generalized laws of reflection and refraction. Science, 334, 333(2011).

    [11] J. P. Balthasar Mueller, N. A. Rubin, R. C. Devlin, B. Groever, F. Capasso. Metasurface polarization optics: independent phase control of arbitrary orthogonal states of polarization. Phys. Rev. Lett., 118, 113901(2017).

    [12] S. Zahra, L. Ma, W. Wang, J. Li, D. Chen, Y. Liu, Y. Zhou, N. Li, Y. Huang, G. Wen. Electromagnetic metasurfaces and reconfigurable metasurfaces: a review. Front. Phys., 8, 593411(2021).

    [13] S. Wang, P. C. Wu, V.-C. Su, Y.-C. Lai, M.-K. Chen, H. Y. Kuo, B. H. Chen, Y. H. Chen, T.-T. Huang, J.-H. Wang, R.-M. Lin, C.-H. Kuan, T. Li, Z. Wang, S. Zhu, D. P. Tsai. A broadband achromatic metalens in the visible. Nat. Nanotechnol., 13, 227(2018).

    [14] W. T. Chen, A. Y. Zhu, V. Sanjeev, M. Khorasaninejad, Z. Shi, E. Lee, F. Capasso. A broadband achromatic metalens for focusing and imaging in the visible. Nat. Nanotechnol., 13, 220(2018).

    [15] J. Park, B. G. Jeong, S. I. Kim, D. Lee, J. Kim, C. Shin, C. B. Lee, T. Otsuka, J. Kyoung, S. Kim, K.-Y. Yang, Y.-Y. Park, J. Lee, I. Hwang, J. Jang, S. H. Song, M. L. Brongersma, K. Ha, S.-W. Hwang, H. Choo, B. L. Choi. All-solid-state spatial light modulator with independent phase and amplitude control for three-dimensional LiDAR applications. Nat. Nanotechnol., 16, 69(2021).

    [16] G. E. Lio, A. Ferraro. LIDAR and beam steering tailored by neuromorphic metasurfaces dipped in a tunable surrounding medium. Photonics, 8, 65(2021).

    [17] J. Li, Y. Chen, Y. Hu, H. Duan, N. Liu. Magnesium-based metasurfaces for dual-function switching between dynamic holography and dynamic color display. ACS Nano, 14, 7892(2020).

    [18] J. Kim, Y. Yang, T. Badloe, I. Kim, G. Yoon, J. Rho. Geometric and physical configurations of meta-atoms for advanced metasurface holography. InfoMat, 3, 739(2021).

    [19] Z. Zhao, Y. Wang, C. Guan, K. Zhang, Q. Wu, H. Li, J. Liu, S. N. Burokur, X. Ding. Deep learning-enabled compact optical trigonometric operator with metasurface. PhotoniX, 3, 15(2022).

    [20] X. Zhang, L. Huang, R. Zhao, H. Zhou, X. Li, G. Geng, J. Li, X. Li, Y. Wang, S. Zhang. Basis function approach for diffractive pattern generation with Dammann vortex metasurfaces. Sci. Adv., 8, eabp8073(2022).

    [21] C. Qian, X. Lin, X. Lin, J. Xu, Y. Sun, E. Li, B. Zhang, H. Chen. Performing optical logic operations by a diffractive neural network. Light Sci. Appl., 9, 59(2020).

    [22] Z. Zhao, Y. Wang, X. Ding, H. Li, J. Fu, K. Zhang, S. N. Burokur, Q. Wu. Compact logic operator utilizing single-layer metasurface. Photonics Res., 10, 316(2021).

    [23] L. Li, J. Zhang, Y. Hu, J. Lai, S. Wang, P. Yang, X. Li, H. Duan. Broadband polarization-switchable multi-focal noninterleaved metalenses in the visible. Laser Photonics Rev., 15, 2100198(2021).

    [24] D. Zhong, Y. Ji, W. Luo. Controllable optoelectric composite logic gates based on the polarization switching in an optically injected VCSEL. Opt. Express, 23, 29823(2015).

    [25] D. Zhong, G. Yang, Z. Xiao, Y. Ding, J. Xi, N. Zeng, H. Yang. Optical chaotic data-selection logic operation with the fast response for picosecond magnitude. Opt. Express, 27, 23357(2019).

    [26] D. Zhong, Z. Xiao, G. Yang, N. Zhen, H. Yang. Real-time ranging of the six orientational targets by using chaotic polarization radars in the three-node VCSEL network. Opt. Express, 27, 9857(2019).

    [27] D.-Z. Zhong, G.-L. Xu, W. Luo, Z.-Z. Xiao. Reconfigurable dynamic all-optical chaotic logic operations in an optically injected VCSEL. Chin. Phys. B, 26, 124204(2017).

    [28] R. Zhao, B. Sain, Q. Wei, C. Tang, X. Li, T. Weiss, L. Huang, Y. Wang, T. Zentgraf. Multichannel vectorial holographic display and encryption. Light Sci. Appl., 7, 95(2018).

    [29] Y. Hu, L. Li, Y. Wang, M. Meng, L. Jin, X. Luo, Y. Chen, X. Li, S. Xiao, H. Wang, Y. Luo, C.-W. Qiu, H. Duan. Trichromatic and tripolarization-channel holography with noninterleaved dielectric metasurface. Nano Lett., 20, 994(2019).

    Data from CrossRef

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    Jing Wang, Wenli Wang, Yang Lu, Qun Hao, Liandong Yu. Parallel all-optical logic operations based on metasurface polarization optics[J]. Chinese Optics Letters, 2023, 21(10): 101602
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