• Acta Optica Sinica
  • Vol. 39, Issue 11, 1105001 (2019)
Shanfeng Liu, Shujuan Yuan, Yuqi Sun, Qian Yang, Yangmei Liu, Ning Liu, Yunqing Lu, and Ji Xu*
Author Affiliations
  • College of Electronic and Optical Engineering & College of Microelectronics, Nanjing University of Posts and Telecommunications, Nanjing, Jiangsu 210023, China
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    DOI: 10.3788/AOS201939.1105001 Cite this Article Set citation alerts
    Shanfeng Liu, Shujuan Yuan, Yuqi Sun, Qian Yang, Yangmei Liu, Ning Liu, Yunqing Lu, Ji Xu. Focusing Properties of Cylindrical Vector Beams Through Subwavelength Grating Lenses with Negative Refractive Indices[J]. Acta Optica Sinica, 2019, 39(11): 1105001 Copy Citation Text show less
    Profile of plane-concave lens and schematic of focusing process. (a) Cross-section of plane-concave lens in r-z plane; (b) schematic of focusing process
    Fig. 1. Profile of plane-concave lens and schematic of focusing process. (a) Cross-section of plane-concave lens in r-z plane; (b) schematic of focusing process
    Intensity distributions of focal field with predetermined f=8 μm. (a) Radial polarization incidence; (b) azimuthal polarization incidence
    Fig. 2. Intensity distributions of focal field with predetermined f=8 μm. (a) Radial polarization incidence; (b) azimuthal polarization incidence
    Intensity distributions of focal field with predetermined f=8 μm and different refractive indices of n=2, 2.20, and 2.36, respectively. (a) Intensity distribution of field along axial direction; (b) intensity distribution of field along lateral direction (radial direction)
    Fig. 3. Intensity distributions of focal field with predetermined f=8 μm and different refractive indices of n=2, 2.20, and 2.36, respectively. (a) Intensity distribution of field along axial direction; (b) intensity distribution of field along lateral direction (radial direction)
    Intensity distributions of focal field with predetermined f=8 μm and different equivalent negative refractive indices of neff=-0.8, -0.9, -1.0, -1.1, and -1.2 respectively. (a) Intensity distribution of field along axial direction; (b) intensity distribution of field along lateral (radial) direction
    Fig. 4. Intensity distributions of focal field with predetermined f=8 μm and different equivalent negative refractive indices of neff=-0.8, -0.9, -1.0, -1.1, and -1.2 respectively. (a) Intensity distribution of field along axial direction; (b) intensity distribution of field along lateral (radial) direction
    Intensity distributions of focal field with predetermined f=6, 7, 8, and 9 μm, as n=2.36 and neff=-1.0. (a) Intensity distribution of field along axial direction; (b) intensity distribution of field along lateral (radial) direction
    Fig. 5. Intensity distributions of focal field with predetermined f=6, 7, 8, and 9 μm, as n=2.36 and neff=-1.0. (a) Intensity distribution of field along axial direction; (b) intensity distribution of field along lateral (radial) direction
    Analyses of focal field with f=6 μm and f=9 μm. (a)(b) Contour plots of |E|2; (c)(d) contour plots of |Ez|2; (e)(f) distributions of |E|2, |Ez|2, and |Er|2 along lateral (radial) direction
    Fig. 6. Analyses of focal field with f=6 μm and f=9 μm. (a)(b) Contour plots of |E|2; (c)(d) contour plots of |Ez|2; (e)(f) distributions of |E|2, |Ez|2, and |Er|2 along lateral (radial) direction
    Shanfeng Liu, Shujuan Yuan, Yuqi Sun, Qian Yang, Yangmei Liu, Ning Liu, Yunqing Lu, Ji Xu. Focusing Properties of Cylindrical Vector Beams Through Subwavelength Grating Lenses with Negative Refractive Indices[J]. Acta Optica Sinica, 2019, 39(11): 1105001
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