Infrared and Laser Engineering, Volume. 52, Issue 7, 20230323(2023)
Simultaneous modulation of beam intensity and wavefront with freeform surfaces on the off-axis target plane (invited)
Fig. 1. Model of beam intensity and wavefront control based on an off-axis target plane using freeform surfaces
Fig. 2. Mapping model from off-axis target plane to vertical virtual plane
Fig. 3. A design example of simultaneous control of light intensity and wavefront on off-axis plane. (a) Optical control model; (b) Target irradiance distribution of the off-axis target plane; (c) Mapping of the irradiance distribution on the vertical virtual plane; (d) Entrance surface; (e) Exit surface, and (f) the lens model
Fig. 4. Simulation verification of lighting effects on the tilted target plane. (a) Normalized irradiance distribution on the tilted target plane of |
Fig. 5. Simulation results at different lighting distances. Normalized irradiance distribution on the tilted plane when |
Fig. 6. Analysis of lighting results on the vertical virtual plane. (a) Discrete distribution of incident beam; (b) Ray drop points distribution on the vertical virtual plane obtained by solving the MA equation; (c) Simulation result on the vertical virtual plane when |
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Fanqi Shen, Yuqin Chen, Lin Yang, Jun She, Kai Chen, Jianming Huang, Rengmao Wu. Simultaneous modulation of beam intensity and wavefront with freeform surfaces on the off-axis target plane (invited)[J]. Infrared and Laser Engineering, 2023, 52(7): 20230323
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Received: May. 31, 2023
Accepted: --
Published Online: Aug. 16, 2023
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