Chinese Optics Letters, Volume. 19, Issue 2, 022603(2021)
Estimating topological charge of propagating vortex from single-shot non-imaged speckle
Fig. 1. Geometry of sources, scattering plane, observation plane, and propagation system.
Fig. 2. Simulations of intensity pattern prior to the diffuser when the polarizer orientation is 45°. The topological charges of the vortex beams are 1, 2, and 3, respectively.
Fig. 3. Experimental setup for measuring the topological charge of the vortex beams from laser speckle. Laser, He–Ne laser; MO, microscope objective; P, pinhole;
Fig. 4. Experimental results and numerical simulations of the Fourier transform of the cross-covariance for the vortex beam with topological charge 1. (a)–(d) are the experimental results for rotation angles of polarizer 0°, 45°, 90°, and −45°. (e)–(h) are the simulations corresponding to (a)–(d), respectively.
Fig. 5. Experimental results and numerical simulations of the Fourier transform of the cross-covariance for vortex beam case without a polarizer. (a)–(c) are the experimental results for topological charges 1, 2, and 3. (d)–(f) are the simulations corresponding to (a)–(c), respectively.
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Li Chen, Rakesh Kumar Singh, Aristide Dogariu, Ziyang Chen, Jixiong Pu, "Estimating topological charge of propagating vortex from single-shot non-imaged speckle," Chin. Opt. Lett. 19, 022603 (2021)
Category: Physical Optics
Received: Jul. 21, 2020
Accepted: Sep. 22, 2020
Posted: Sep. 23, 2020
Published Online: Jan. 4, 2021
The Author Email: Ziyang Chen (ziyang@hqu.edu.cn), Jixiong Pu (jixiong@hqu.edu.cn)