26 April 2013 Study on the generation of a vortex laser beam by using phase-only liquid crystal spatial light modulator
Haotong Ma, Haojun Hu, Wenke Xie, Xiaojun Xu
Author Affiliations +
Abstract
The generation of vortex laser beam by using phase-only liquid crystal spatial light modulator (LC-SLM) combined with the spiral phase screen is experimentally and theoretically studied. Results show that Gaussian and dark hollow vortex laser beams can be generated by using this method successfully. Differing with the Gaussian and dark hollow beams, far field intensities of the generated vortex laser beams still exhibit dark hollow distributions. The comparisons between the ideal generation and experimental generation of vortex laser beams with different optical topological charges by using phase only LC-SLM is investigated in detail. Compared with the ideal generated vortex laser beam, phase distribution of the experimental generated vortex laser beam contains many phase singularities, the number of which is the same as that of the optical topological charges. The corresponding near field and far field dark hollow intensity distributions of the generated vortex laser beams exhibit discontinuous in rotational direction. Detailed theoretical analysis show that the main reason for the physical phenomenon mentioned above is the response error of phase only LC-SLM. These studies can provide effective guide for the generation of vortex laser beam by using phase only LC-SLM for optical tweezers and free space optical communication.
© 2013 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2013/$25.00 © 2013 SPIE
Haotong Ma, Haojun Hu, Wenke Xie, and Xiaojun Xu "Study on the generation of a vortex laser beam by using phase-only liquid crystal spatial light modulator," Optical Engineering 52(9), 091721 (26 April 2013). https://doi.org/10.1117/1.OE.52.9.091721
Published: 26 April 2013
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CITATIONS
Cited by 13 scholarly publications.
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KEYWORDS
Near field

Near field optics

Spiral phase plates

Gaussian beams

Liquid crystals

Error analysis

Optical engineering

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