Chinese Optics Letters, Volume. 14, Issue 8, 080501(2016)
Diagnostics of the topological charge of optical vortex by a phase-diffractive element
Fig. 2. Normalized intensity distribution of the incident optical vortices and the simulated far-field diffraction patterns. (a), (b), and (c) are the incident single-ring (radial index
Fig. 3. Two examples of the detecting procedure of our method. (a) The case of a single-ring optical vortex with
Fig. 4. Experimental setup to diagnose the topological charge of the optical vortex. LD, laser diode; SMF, single mode fiber; Col., collimator; L, convex lens.
Fig. 5. Holograms of the spiral phase plate and the simulation results of the generated LG modes. From (a) to (e) are the spiral phase plates to generate the
Fig. 6. Experimental results of the incident single-ring optical vortices. (a) The case of the optical vortices with a positive topological charge. (b) The case of the optical vortices with a negative topological charge. In each submap, from top to bottom are the incident optical vortices, simulation results, and experimental results, respectively.
Fig. 7. Experimental results of the incident multi-ring optical vortices. From left to right are the
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Shiyao Fu, Tonglu Wang, Yan Gao, Chunqing Gao, "Diagnostics of the topological charge of optical vortex by a phase-diffractive element," Chin. Opt. Lett. 14, 080501 (2016)
Category: Diffraction and Gratings
Received: Feb. 2, 2016
Accepted: Jun. 14, 2016
Published Online: Aug. 3, 2018
The Author Email: Chunqing Gao (gao@bit.edu.cn)