• Laser & Optoelectronics Progress
  • Vol. 56, Issue 23, 232601 (2019)
Peishan Han1, Zehui Lu1, Daihe Fan1、2、*, Xinyan Jia1、2, Yun Wei1、2, Xianghui Chang1、2, and Qijun Liu1、2
Author Affiliations
  • 1School of Physical Science and Technology, Southwest Jiaotong University, Chengdu, Sichuan 611756, China
  • 2National Demonstration Center for Experimental Physics Education, Southwest Jiaotong University, Chengdu, Sichuan 611756, China
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    DOI: 10.3788/LOP56.232601 Cite this Article Set citation alerts
    Peishan Han, Zehui Lu, Daihe Fan, Xinyan Jia, Yun Wei, Xianghui Chang, Qijun Liu. Influence of Nonparallel Slot and Prism Ridge on Interference of Fresnel Double Prism[J]. Laser & Optoelectronics Progress, 2019, 56(23): 232601 Copy Citation Text show less
    Schematic of the Fresnel double-prism interference. (a) Top view of coordinate system after slot deflecting by a certain angle; (b) schematic of slot deflection
    Fig. 1. Schematic of the Fresnel double-prism interference. (a) Top view of coordinate system after slot deflecting by a certain angle; (b) schematic of slot deflection
    Interference intensity variation diagram in x-direction of screen. (a) Changing spacing between slot and double prism; (b) changing spacing between slot and viewing screen; (c) changing double-prism wedge angle
    Fig. 2. Interference intensity variation diagram in x-direction of screen. (a) Changing spacing between slot and double prism; (b) changing spacing between slot and viewing screen; (c) changing double-prism wedge angle
    Interference fringe distributions and intensity distributions of observation plane for different deflection angles of slot. (a)(b)(c) Interference fringe distributions when γ=0°, 0.11°, 0.16°; (d)(e)(f) intensity distributions at z=0 on observation plane when γ=0°, 0.11°, 0.16°
    Fig. 3. Interference fringe distributions and intensity distributions of observation plane for different deflection angles of slot. (a)(b)(c) Interference fringe distributions when γ=0°, 0.11°, 0.16°; (d)(e)(f) intensity distributions at z=0 on observation plane when γ=0°, 0.11°, 0.16°
    Interference fringe contrast as a function of γ under different slot lengths. (a) l=2 cm; (b) l=0.5 cm
    Fig. 4. Interference fringe contrast as a function of γ under different slot lengths. (a) l=2 cm; (b) l=0.5 cm
    Captured images obtained when angle γ between slot and double prism ridge is increased. (a) Interferogram obtained when γ≈0°; (b) interferogram obtained when slot is rotated clockwise at a certain angle (i.e., γ is increased); (c) interferogram obtained when slot continues to rotate clockwise at a certain angle
    Fig. 5. Captured images obtained when angle γ between slot and double prism ridge is increased. (a) Interferogram obtained when γ≈0°; (b) interferogram obtained when slot is rotated clockwise at a certain angle (i.e., γ is increased); (c) interferogram obtained when slot continues to rotate clockwise at a certain angle
    Peishan Han, Zehui Lu, Daihe Fan, Xinyan Jia, Yun Wei, Xianghui Chang, Qijun Liu. Influence of Nonparallel Slot and Prism Ridge on Interference of Fresnel Double Prism[J]. Laser & Optoelectronics Progress, 2019, 56(23): 232601
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