• Optical Instruments
  • Vol. 44, Issue 6, 23 (2022)
Yang ZHU and Xiaofei ZANG*
Author Affiliations
  • School of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China
  • show less
    DOI: 10.3969/j.issn.1005-5630.2022.006.004 Cite this Article
    Yang ZHU, Xiaofei ZANG. Terahertz metalens with extended focal depth and polarization controllable[J]. Optical Instruments, 2022, 44(6): 23 Copy Citation Text show less
    References

    [1] LIN D M, FAN P Y, HASMAN E, et al. Dielectric gradient metasurface optical elements[J]. Science, 345, 298-302(2014).

    [2] EISENBACH O, AVAYU O, DITCOVSKI R, et al. Metasurfaces based dual wavelength diffractive lenses[J]. Optics Express, 23, 3928-3936(2015).

    [3] WEST P R, STEWART J L, KILDISHEV A V, et al. All-dielectric subwavelength metasurface focusing lens[J]. Optics Express, 22, 26212-26221(2014).

    [4] WEN D D, YUE F Y, ARDRON M, et al. Multifunctional metasurface lens for imaging and Fourier transform[J]. Scientific Reports, 6, 27628(2016).

    [5] ZHAO Y, ALÙ A. Manipulating light polarization with ultrathin plasmonic metasurfaces[J]. Physical Review B, 84, 205428(2011).

    [6] YU N F, AIETA F, GENEVET P, et al. A broadband, background-free quarter-wave plate based on plasmonic metasurfaces[J]. Nano Letters, 12, 6328-6333(2012).

    [7] ZHENG J, YE Z C, SUN N L, et al. Highly anisotropic metasurface: a polarized beam splitter and hologram[J]. Scientific Reports, 4, 6491(2014).

    [8] WAN W W, GAO J, YANG X D. Full-color plasmonic metasurface holograms[J]. ACS Nano, 10, 10671-10680(2016).

    [9] LI Z Y, PALACIOS E, BUTUN S, et al. Visible-frequency metasurfaces for broadband anomalous reflection and high-efficiency spectrum splitting[J]. Nano Letters, 15, 1615-1621(2015).

    [10] GENEVET P, CAPASSO F. Holographic optical metasurfaces: a review of current progress[J]. Reports on Progress in Physics, 78, 024401(2015).

    [11] LIN J, GENEVET P, KATS M A, et al. Nanostructured holograms for broadband manipulation of vector beams[J]. Nano Letters, 13, 4269-4274(2013).

    [12] MONTELONGO Y, TENORIO-PEARL J O, WILLIAMS C, et al. Plasmonic nanoparticle scattering for color holograms[J]. Proceedings of the National Academy of Sciences of the United States of America, 111, 12679-12683(2014).

    [13] WANG J, YANG J Y, FAZAL I M, et al. Terabit free-space data transmission employing orbital angular momentum multiplexing[J]. Nature Photonics, 6, 488-496(2012).

    [14] YAN Y, XIE G D, LAVERY M P J, et al. High-capacity millimetre-wave communications with orbital angular momentum multiplexing[J]. Nature Communications, 5, 4876(2014).

    [15] SUEDA K, MIYAJI G, MIYANAGA N, et al. Laguerre-Gaussian beam generated with a multilevel spiral phase plate for high intensity laser pulses[J]. Optics Express, 12, 3548-3553(2004).

    [16] KARIMI E, PICCIRILLO B, NAGALI E, et al. Efficient generation and sorting of orbital angular momentum eigenmodes of light by thermally tuned q-plates[J]. Applied Physics Letters, 94, 231124(2009).

    [17] DAVIDSON N, FRIESEM A A, HASMAN E. Holographic axilens: high resolution and long focal depth[J]. Optics Letters, 16, 523-525(1991).

    [18] MIKUŁA G, JAROSZEWICZ Z, KOLODZIEJCZYK A, et al. Imaging with extended focal depth by means of lenses with radial and angular modulation[J]. Optics Express, 15, 9184-9193(2007).

    [19] ZHANG Z R, WEN D D, ZHANG C M, et al. Multifunctional light sword metasurface lens[J]. ACS Photonics, 5, 1794-1799(2018).

    [20] ZANG X F, XU W W, GU M, et al. Polarization-insensitive metalens with extended focal depth and longitudinal high-tolerance imaging[J]. Advanced Optical Materials, 8, 1901342(2020).

    [21] ZANG X F, DING H Z, INTARAVANNE Y, et al. A multi-foci metalens with polarization-rotated focal points[J]. Laser & Photonics Reviews, 13, 1900182(2019).

    Yang ZHU, Xiaofei ZANG. Terahertz metalens with extended focal depth and polarization controllable[J]. Optical Instruments, 2022, 44(6): 23
    Download Citation