• Laser & Optoelectronics Progress
  • Vol. 59, Issue 19, 1924001 (2022)
Zhi Ren*, Wenwen Li, Junzhe Lin, Siqi Chang, and Songtao Li
Author Affiliations
  • Department of Mathematics and Physics, North China Electric Power University, Baoding 071003, Hebei, China
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    DOI: 10.3788/LOP202259.1924001 Cite this Article Set citation alerts
    Zhi Ren, Wenwen Li, Junzhe Lin, Siqi Chang, Songtao Li. Research on Beam Deflector and Super Lens Based on U-Shaped Hyperstructured Surface[J]. Laser & Optoelectronics Progress, 2022, 59(19): 1924001 Copy Citation Text show less
    Structure diagram and parameters of U-shaped element structure. (a) Three-dimensional diagram of U-shaped element structure; (b) schematic diagram of xy plane of U-shaped element structure; (c) parameterized scanning result of outer edge length S; (d) parameterized scanning result of height h; (e) parameterized scanning result of lattice constant A
    Fig. 1. Structure diagram and parameters of U-shaped element structure. (a) Three-dimensional diagram of U-shaped element structure; (b) schematic diagram of xy plane of U-shaped element structure; (c) parameterized scanning result of outer edge length S; (d) parameterized scanning result of height h; (e) parameterized scanning result of lattice constant A
    Phases of U-shaped element structure. (a) Phases after 45° rotation; (b) phases after -45° rotation
    Fig. 2. Phases of U-shaped element structure. (a) Phases after 45° rotation; (b) phases after -45° rotation
    Beam deflector with eight unit structures and phases corresponding to eight unit structures
    Fig. 3. Beam deflector with eight unit structures and phases corresponding to eight unit structures
    Electric fields and deflection angles of beam deflector. (a) Phenomenon of XLP incidence; (b) phenomenon of YLP incidence; (c) phenomenon of LCP incidence; (d) phenomenon of RCP incidence
    Fig. 4. Electric fields and deflection angles of beam deflector. (a) Phenomenon of XLP incidence; (b) phenomenon of YLP incidence; (c) phenomenon of LCP incidence; (d) phenomenon of RCP incidence
    Arrangement of 32 element structures of super lens and phases corresponding to eight element structures selected by super lens
    Fig. 5. Arrangement of 32 element structures of super lens and phases corresponding to eight element structures selected by super lens
    Phenomena after different polarization states of light incident. (a) Phase and intensity diagrams obtained when XLP is incident; (b) phase and intensity diagrams obtained when YLP is incident; (c) phase and intensity diagrams obtained when LCP is incident; (d) phase and intensity diagrams obtained when RCP is incident
    Fig. 6. Phenomena after different polarization states of light incident. (a) Phase and intensity diagrams obtained when XLP is incident; (b) phase and intensity diagrams obtained when YLP is incident; (c) phase and intensity diagrams obtained when LCP is incident; (d) phase and intensity diagrams obtained when RCP is incident
    Focal depth and focal spot radius of super lens. (a) Focal depth; (b) focal spot radius
    Fig. 7. Focal depth and focal spot radius of super lens. (a) Focal depth; (b) focal spot radius
    Intensity distributions of super lens with focal lengths of 6 μm,8 μm, and 10 μm, respectively when XLP, YLP, LCP, and RCP are incident
    Fig. 8. Intensity distributions of super lens with focal lengths of 6 μm,8 μm, and 10 μm, respectively when XLP, YLP, LCP, and RCP are incident
    Zhi Ren, Wenwen Li, Junzhe Lin, Siqi Chang, Songtao Li. Research on Beam Deflector and Super Lens Based on U-Shaped Hyperstructured Surface[J]. Laser & Optoelectronics Progress, 2022, 59(19): 1924001
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