Chinese Journal of Lasers, Volume. 50, Issue 18, 1813016(2023)

Erasable Dual‑Channel Polarization Multiplexed Dielectric Hologram Metasurface

Liang Liu1, Shaolin Zhou1、*, Haiyang Quan2, Junbo Liu2, jian Wang2, and Song Hu2、**
Author Affiliations
  • 1College of Microelectronics, South China University of Technology, Guangzhou 511442, Guangdong, China
  • 2Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610207, Sichuan, China
  • show less
    References(34)

    [1] Fan Z B, Qiu H Y, Zhang H L et al. A broadband achromatic metalens array for integral imaging in the visible[J]. Light: Science & Applications, 8, 67(2019).

    [2] Paniagua-Domínguez R, Yu Y F, Khaidarov E et al. A metalens with a near-unity numerical aperture[J]. Nano Letters, 18, 2124-2132(2018).

    [3] Ni X J, Kildishev A V, Shalaev V M. Metasurface holograms for visible light[J]. Nature Communications, 4, 2807(2013).

    [4] Huang L L, Zhang S A, Zentgraf T. Metasurface holography: from fundamentals to applications[J]. Nanophotonics, 7, 1169-1190(2018).

    [5] Lee G Y, Sung J, Lee B. Recent advances in metasurface hologram technologies (Invited paper)[J]. ETRI Journal, 41, 10-22(2019).

    [6] Yue F Y, Wen D D, Xin J T et al. Vector vortex beam generation with a single plasmonic metasurface[J]. ACS Photonics, 3, 1558-1563(2016).

    [7] Bao Y J, Ni J C, Qiu C W. A minimalist single-layer metasurface for arbitrary and full control of vector vortex beams[J]. Advanced Materials, 32, 1905659(2020).

    [8] Xu H X, Liu H W, Ling X H et al. Broadband vortex beam generation using multimode Pancharatnam–Berry metasurface[J]. IEEE Transactions on Antennas and Propagation, 65, 7378-7382(2017).

    [9] Zheng G X, Mühlenbernd H, Kenney M et al. Metasurface holograms reaching 80% efficiency[J]. Nature Nanotechnology, 10, 308-312(2015).

    [10] Xie X, Liu K P, Pu M B et al. All-metallic geometric metasurfaces for broadband and high-efficiency wavefront manipulation[J]. Nanophotonics, 9, 3209-3215(2020).

    [11] Dai Q, Zhou N, Deng L G et al. Dual-channel binary gray-image display enabled with malus-assisted metasurfaces[J]. Physical Review Applied, 13, 034002(2020).

    [12] Zhang C M, Dong F L, Intaravanne Y et al. Multichannel metasurfaces for anticounterfeiting[J]. Physical Review Applied, 12, 034028(2019).

    [13] Deng L G, Deng J, Guan Z Q et al. Malus-metasurface-assisted polarization multiplexing[J]. Light: Science & Applications, 9, 101(2020).

    [14] Wen D D, Yue F Y, Li G X et al. Helicity multiplexed broadband metasurface holograms[J]. Nature Communications, 6, 8241(2015).

    [15] Li Z L, Chen C, Guan Z Q et al. Three-channel metasurfaces for simultaneous meta-holography and meta-nanoprinting: a single-cell design approach[J]. Laser & Photonics Reviews, 14, 2000032(2020).

    [16] Arbabi E, Arbabi A, Kamali S M et al. MEMS-tunable dielectric metasurface lens[J]. Nature Communications, 9, 812(2018).

    [17] Cong L Q, Pitchappa P, Lee C K et al. Active phase transition via loss engineering in a terahertz MEMS metamaterial[J]. Advanced Materials, 29, 1700733(2017).

    [18] Chen H T, Padilla W J, Zide J M O et al. Active terahertz metamaterial devices[J]. Nature, 444, 597-600(2006).

    [19] Wuttig M, Yamada N. Phase-change materials for rewriteable data storage[J]. Nature Materials, 6, 824-832(2007).

    [20] Lencer D, Salinga M, Grabowski B et al. A map for phase-change materials[J]. Nature Materials, 7, 972-977(2008).

    [21] Bruns G, Merkelbach P, Schlockermann C et al. Nanosecond switching in GeTe phase change memory cells[J]. Applied Physics Letters, 95, 043108(2009).

    [22] Atwood G. Phase-change materials for electronic memories[J]. Science, 321, 210-211(2008).

    [23] Raeis-Hosseini N, Rho J. Metasurfaces based on phase-change material as a reconfigurable platform for multifunctional devices[J]. Materials, 10, 1046(2017).

    [24] Ruiz de Galarreta C, Sinev I, Alexeev A M et al. Reconfigurable multilevel control of hybrid all-dielectric phase-change metasurfaces[J]. Optica, 7, 476-484(2020).

    [25] Zhang C, Yin H Q, Zhang R J et al. Thermodynamic description of phase equilibria in the C-Mo-W-N quaternary system[J]. Calphad, 62, 201-206(2018).

    [26] Zhou S L, Wu Y F, Chen S R et al. Phase change induced active metasurface devices for dynamic wavefront control[J]. Journal of Physics D: Applied Physics, 53, 204001(2020).

    [27] Liu X A, Deng J H, Jin M K et al. Cassegrain metasurface for generation of orbital angular momentum of light[J]. Applied Physics Letters, 115, 221102(2019).

    [28] Huang L L, Chen X Z, Mühlenbernd H et al. Dispersionless phase discontinuities for controlling light propagation[J]. Nano Letters, 12, 5750-5755(2012).

    [29] Chen X Z, Huang L L, Mühlenbernd H et al. Dual-polarity plasmonic metalens for visible light[J]. Nature Communications, 3, 1198(2012).

    [30] Luo X G. Principles of electromagnetic waves in metasurfaces[J]. Science China Physics,Mechanics & Astronomy, 58, 594201(2015).

    [31] West P R, Stewart J L, Kildishev A V et al. All-dielectric subwavelength metasurface focusing lens[J]. Optics Express, 22, 26212-26221(2014).

    [32] Li X, Ma X L, Luo X G. Principles and applications of metasurfaces with phase modulation[J]. Opto-Electronic Engineering, 44, 255-275,376(2017).

    [33] Chen M H, Yen C W, Guo C C et al. Polarization-insensitive GaN metalenses at visible wavelengths[J]. Scientific Reports, 11, 14541(2021).

    [34] Zhou S L, Liu L A, Chen Z J et al. Polarization-multiplexed metaholograms with erasable functionality[J]. Journal of Physics D: Applied Physics, 56, 155102(2023).

    Tools

    Get Citation

    Copy Citation Text

    Liang Liu, Shaolin Zhou, Haiyang Quan, Junbo Liu, jian Wang, Song Hu. Erasable Dual‑Channel Polarization Multiplexed Dielectric Hologram Metasurface[J]. Chinese Journal of Lasers, 2023, 50(18): 1813016

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: micro and nano optics

    Received: Apr. 17, 2023

    Accepted: Jul. 18, 2023

    Published Online: Sep. 1, 2023

    The Author Email: Zhou Shaolin (eeslzhou@scut.edu.cn), Hu Song (husong@ioe.ac.cn)

    DOI:10.3788/CJL230730

    Topics