Chinese Journal of Lasers, Volume. 47, Issue 4, 409001(2020)
Influence of Hyperbolic Vertex on Axicon-Focusing Cylindrical Vector Beams
Fig. 1. Light intensity contour maps. (a) Radial component; (b) longitudinal component
Fig. 2. Intensity distributions of radially polarized beam focused by ideal axicon. (a) Intensity distribution at ρ-z plane; (b) intensity cross section within range of 100--900 mm; (c) intensity cross section within range of 1000--1600 mm
Fig. 3. Intensity distribution of azimuthally component of electric field vector at z=500 mm
Fig. 4. Intensity distributions of azimuthally polarized beam focused by ideal axicon. (a) Intensity distribution at ρ-z plane; (b) intensity cross section within range of 100--1100 mm; (c) intensity cross section within range of 1100--1500 mm
Fig. 6. Intensity distributions of radially polarized beam with different waist radius focused by ideal axicon and hyperbolic vertex axicon. (a)(b) ω=0.8 mm; (c)(d) ω=1 mm; (e)(f) ω=2 mm; (g)(h) ω=4 mm; (i)(j) ω=4.5 mm
Fig. 7. Intensity distributions of azimuthally polarized beam with different waist radius focused by ideal axicon and hyperbolic vertex axicon. (a)(b) ω=0.8 mm; (c)(d) ω=1.5 mm; (e)(f) ω=3.5 mm; (g)(h) ω=4 mm
Fig. 8. Cross section intensity distributions of cylindrical vector beams passing through ideal axicon and hyperbolic vertex axicon. (a)(b) Radially polarized beam; (c)(d) azimuthally polarized beam
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Liu Qingwei, Li Chongguang, Lou Yuli, Wang Huaying, Dong Zhao, Gui Jinbin, Song Qinghe, Yang Li. Influence of Hyperbolic Vertex on Axicon-Focusing Cylindrical Vector Beams[J]. Chinese Journal of Lasers, 2020, 47(4): 409001
Category: holography and information processing
Received: Sep. 18, 2019
Accepted: --
Published Online: Apr. 9, 2020
The Author Email: Yuli Lou (578928841@qq.com)