• Laser & Optoelectronics Progress
  • Vol. 56, Issue 14, 142901 (2019)
Qiang Xu*, Jingang Li, Xu Wang, Yiping Han, and Zhensen Wu
Author Affiliations
  • School of Physics and Optoelectronic Engineering, Xidian University, Xi'an, Shaanxi 710071, China
  • show less
    DOI: 10.3788/LOP56.142901 Cite this Article Set citation alerts
    Qiang Xu, Jingang Li, Xu Wang, Yiping Han, Zhensen Wu. Scattering Characteristics of Single Spherical Aerosol Particles Illuminated by High-Order Vector Bessel Vortex Beam[J]. Laser & Optoelectronics Progress, 2019, 56(14): 142901 Copy Citation Text show less
    Differential scattering cross-section versus scattering angle when vector Bessel vortex beams with different topological charges (l=0, 1, 2, 3) are scattered by ammonium-nitrate spherical particles. (a) Differential scattering cross-section of electric field; (b) differential scattering cross-section of magnetic field
    Fig. 1. Differential scattering cross-section versus scattering angle when vector Bessel vortex beams with different topological charges (l=0, 1, 2, 3) are scattered by ammonium-nitrate spherical particles. (a) Differential scattering cross-section of electric field; (b) differential scattering cross-section of magnetic field
    Differential scattering cross-section versus scattering angle when vector Bessel vortex beams with different topological charges (l = 0, 1, 3) and half-cone angles are scattered by ammonium-nitrate spherical particles. (a) l=0, E plane; (b) l=0, H plane; (c) l=1, E plane; (d) l=1, H plane; (e) l=3, E plane; (f) l=3, H plane
    Fig. 2. Differential scattering cross-section versus scattering angle when vector Bessel vortex beams with different topological charges (l = 0, 1, 3) and half-cone angles are scattered by ammonium-nitrate spherical particles. (a) l=0, E plane; (b) l=0, H plane; (c) l=1, E plane; (d) l=1, H plane; (e) l=3, E plane; (f) l=3, H plane
    Extinction cross-section versus size parameter of spherical particle when vector Bessel vortex beams with different half-cone angles are scattered by ammonium-nitrate spherical particles. (a) l=0; (b) l=1; (c) l=2; (d) l=3
    Fig. 3. Extinction cross-section versus size parameter of spherical particle when vector Bessel vortex beams with different half-cone angles are scattered by ammonium-nitrate spherical particles. (a) l=0; (b) l=1; (c) l=2; (d) l=3
    Scattering cross-section versus size parameter when vector Bessel vortex beams with different half-cone angles are scattered by ammonium-nitrate spherical particles. (a) l=0; (b) l=1; (c) l=2; (d) l=3
    Fig. 4. Scattering cross-section versus size parameter when vector Bessel vortex beams with different half-cone angles are scattered by ammonium-nitrate spherical particles. (a) l=0; (b) l=1; (c) l=2; (d) l=3
    Absorption cross-section versus size parameter when vector Bessel vortex beams with different half-cone angles are scattered by ammonium-nitrate spherical particles. (a) l=0; (b) l=1; (c) l=2; (d) l=3
    Fig. 5. Absorption cross-section versus size parameter when vector Bessel vortex beams with different half-cone angles are scattered by ammonium-nitrate spherical particles. (a) l=0; (b) l=1; (c) l=2; (d) l=3
    Qiang Xu, Jingang Li, Xu Wang, Yiping Han, Zhensen Wu. Scattering Characteristics of Single Spherical Aerosol Particles Illuminated by High-Order Vector Bessel Vortex Beam[J]. Laser & Optoelectronics Progress, 2019, 56(14): 142901
    Download Citation