• Infrared and Laser Engineering
  • Vol. 51, Issue 5, 20210602 (2022)
Qingyuan Yang, Wei Wang, and Xiang Tian
Author Affiliations
  • Department of Mathematics and Physics, Shijiazhuang Tiedao University, Shijiazhuang 050043, China
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    DOI: 10.3788/IRLA20210602 Cite this Article
    Qingyuan Yang, Wei Wang, Xiang Tian. High numerical aperture bifocal metalens with regulatory focusing intensity[J]. Infrared and Laser Engineering, 2022, 51(5): 20210602 Copy Citation Text show less
    (a) Schematic of focusing of the bifocal metalens; (b)-(c) Side and top views of silicon microbricks with height H, length L and width W, and the unit cell size is P; (d) Top view of the silicon microbrick with rotation angle θ; (e) Top view of the constructed bifocal metalens
    Fig. 1. (a) Schematic of focusing of the bifocal metalens; (b)-(c) Side and top views of silicon microbricks with height H, length L and width W, and the unit cell size is P; (d) Top view of the silicon microbrick with rotation angle θ; (e) Top view of the constructed bifocal metalens
    Intensity distribution of the bifocal metalens under the RCP (a), LCP (b) and XLP (c) incidence light, respectively; (d) Intensity distribution curve along the x-axis through the focal point under the RCP (blue line) and LCP (red line) incidence light, respectively
    Fig. 2. Intensity distribution of the bifocal metalens under the RCP (a), LCP (b) and XLP (c) incidence light, respectively; (d) Intensity distribution curve along the x-axis through the focal point under the RCP (blue line) and LCP (red line) incidence light, respectively
    Intensity distribution of the focusing field when the incident light is (a),(b),(c) and (d), respectively当入射光分别为(a),(b),(c) 和 (d) 时,聚焦场的强度分布
    Fig. 3. Intensity distribution of the focusing field when the incident light is (a), (b), (c) and (d), respectively 当入射光分别为 (a), (b), (c) 和 (d) 时,聚焦场的强度分布
    Intensity distribution of the focusing field when the RCP light incidence with the angle of 10° (a) and 20° (c), respectively; Intensity distribution of the focusing field when the LCP light incidence with the angle of 10° (b) and 20° (d), respectively
    Fig. 4. Intensity distribution of the focusing field when the RCP light incidence with the angle of 10° (a) and 20° (c), respectively; Intensity distribution of the focusing field when the LCP light incidence with the angle of 10° (b) and 20° (d), respectively
    [in Chinese]
    Fig. 5. [in Chinese]
    Intensity distribution of the focusing field when the RCP (a) and LCP (b) light incidence with the frequency of 0.8 THz; Intensity distribution of the focusing field when the RCP (c) and LCP (d) light incidence with the frequency of 1.2 THz
    Fig. 5. Intensity distribution of the focusing field when the RCP (a) and LCP (b) light incidence with the frequency of 0.8 THz; Intensity distribution of the focusing field when the RCP (c) and LCP (d) light incidence with the frequency of 1.2 THz
    Qingyuan Yang, Wei Wang, Xiang Tian. High numerical aperture bifocal metalens with regulatory focusing intensity[J]. Infrared and Laser Engineering, 2022, 51(5): 20210602
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