Journal of Applied Optics, Volume. 43, Issue 5, 986(2022)

Optically switchable multifunctional terahertz geometric phase metasurface

Junpeng FAN... Xiaozhao WANG*, Jianxin ZHANG, Zhen ZHANG, Cai SUN and Qiyong HU |Show fewer author(s)
Author Affiliations
  • [in Chinese]
  • show less
    References(26)

    [1] B B HU, M C NUSS. Imaging with terahertz waves. Optics Letters, 20, 1716-1718(1995).

    [2] Y FEI, C YU, H PARK, et al. Advances in polarizer technology for terahertz frequency applications. Journal of Infrared Millimeter & Terahertz Waves, 34, 489-499(2013).

    [3] V SHALAEV, A KILDISHEV, T KLAR, et al. Optical negative-index metamaterials: from low to no loss. Nature Photonics, 1, 41-48(2006).

    [4] S ZHANG, Y S PARK, J LI, et al. Negative refractive index in chiral metamaterials. Physical Review Letters, 102, 023901(2009).

    [5] S ZHANG, W FAN, K J MALLOY, et al. Near-infrared double negative metamaterials. Optics Express, 13, 4922-4930(2005).

    [6] X CHEN, L HUANG, H MÜHLENBERND, et al. Dual-polarity plasmonic metalens for visible light. Nature Communications, 3, 1198(2012).

    [7] M WEI, D JIA, X YU, et al. Reflective gradient metasurfaces for polarization-independent light focusing at normal or oblique incidence. Applied Physics Letters, 108, 77(2016).

    [8] Y H LING, L R HUANG, T J LIU, et al. Polarization-switchable and wavelength-controllable multi-functional metasurface for focusing and surface-plasmon-polariton wave excitation. Optics Express, 25, 29812-29821(2017).

    [9] K CHENG, Z D HU, Y WANG, et al. High-performance terahertz vortex beam generator based on square-split-ring metasurfaces. Optics Letters, 45, 6054-6057(2020).

    [10] K CHENG, Z LI, J WU, et al. Super-resolution imaging based on radially polarized beam induced superoscillation using an all-dielectric metasurface. Optics Express, 30, 2780-2791(2022).

    [11] T BAI, Q LI, Y WANG, et al. Terahertz vortex beam generator based on bound states in the continuum. Optics Express, 29, 25270-25279(2021).

    [12] W HE, Y FENG, Z D HU, et al. Sensors with multifold nanorod metasurfaces array based on hyperbolic metamaterials. IEEE Sensors Journal, 20, 1801-1806(2020).

    [13] C WAN, Y HO, S NUNEZ-SANCHEZ, et al. A selective metasurface absorber with an amorphous carbon interlayer for solar thermal applications. Nano Energy, 26, 392-397(2016).

    [14] X LI, X L MA, X G LUO. Principles and applications of metasurfaces with phase modulation. Opto-Electronic Engineering, 44, 255-275(2017).

    [15] J S LI, L N ZHANG. Simple terahertz vortex beam generator based on reflective metasurfaces. Optics Express, 28, 36403(2020).

    [16] J FAN, Y CHENG, B HE. High-efficiency ultrathin terahertz geometric metasurface for full-space wavefront manipulation at two frequencies. Journal of Physics D:Applied Physics, 54, 115101(2020).

    [17] S SUN, K Y YANG, C M WANG, et al. High-efficiency broadband anomalous reflection by gradient meta-surfaces. Nano Letters, 12, 6223-6229(2012).

    [18] J FAN, Y Z CHENG. Broadband high-efficiency cross-polarization conversion and multi-functional wavefront manipulation based on chiral structure metasurface for terahertz wave. Journal of Physics D:Applied Physics, 53, 025109(2020).

    [19] H SHI, J LI, A ZHANG, et al. Gradient metasurface with both polarization-controlled directional surface wave coupling and anomalous reflection. IEEE Antennas and Wireless Propagation Letters, 14, 104-107(2015).

    [20] N K GRADY, J E HEYES, D R CHOWDHURY, et al. Terahertz metamaterials for linear polarization conversion and anomalous refraction. Science, 340, 1304-1307(2013).

    [21] Z D HUANG, B HU, W G LIU, et al. Dynamical tuning of terahertz meta-lens assisted by graphene. Journal of the Optical Society of America B, 34, 1848(2017).

    [22] X LIU, Q WANG, X ZHANG, et al. Thermally dependent dynamic meta‐holography using a vanadium dioxide integrated metasurface. Advanced Optical Materials, 7, 1900175(2019).

    [23] Y Z CHENG, B HE, J FAN, et al. Thermally tunable terahertz vortex beam generator based on InSb metasurface. Journal of the Optical Society of America B, 38, 420928(2021).

    [24] Y Z CHEN, J Q LIU, F CHEN, et al. Optically switchable broadband metasurface absorber based on square ring shaped photoconductive silicon for terahertz waves. Physics Letters A, 402, 127345(2021).

    [25] Y Z CHENG, R Z GONG, J C ZHAO. A photoexcited switchable perfect metamaterial absorber/reflector with polarization-independent and wide-angle for terahertz waves. Optical Materials, 62, 28-33(2016).

    [26] R LI, Z GUO, W WANG, et al. Arbitrary focusing lens by holographic metasurface. Optics Express, 22, 27968(2014).

    Tools

    Get Citation

    Copy Citation Text

    Junpeng FAN, Xiaozhao WANG, Jianxin ZHANG, Zhen ZHANG, Cai SUN, Qiyong HU. Optically switchable multifunctional terahertz geometric phase metasurface[J]. Journal of Applied Optics, 2022, 43(5): 986

    Download Citation

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

    Category: OPTICAL ELEMENT AND FABRICATION

    Received: Apr. 21, 2022

    Accepted: --

    Published Online: Oct. 12, 2022

    The Author Email: WANG Xiaozhao (772405789@qq.com)

    DOI:10.5768/JAO202243.0505003

    Topics